Sun

Sun news: It was an outstanding total solar eclipse!


The solar eclipse of August 12, 2026, was total as seen from Greenland, Iceland and Spain. But the northern part of the eclipse path was plagued with clouds. Meanwhile, in Spain – where the eclipse happened near sunset – the views were glorious!

Sun news August 13: It was an outstanding total solar eclipse!

Today’s top story: What an amazing total solar eclipse! Yesterday’s event delivered one of nature’s grandest spectacles. Observers in Greenland, Iceland and Spain all fell within the path of totality. However, reports from Greenland and Iceland indicate clouds obscured the view. So it seems Spain got the best of it. Meanwhile, beautiful photos have been pouring in from readers. Take a look at our special report. And thank you to everyone who joined us via livestream. This glorious total eclipse left memorable moments for all who witnessed it.

Past 24 hours on the sun

(11 UTC August 12 – 11 UTC August 13)

Flare activity: Solar flare activity dropped to very low levels, with fewer flares and only B (weak) flares. During this period, the sun fired just seven flares, compared to 16 the day before. Moreover, every one of them was a faint B flare.

  • Strongest flare: A B7.4 from an incoming, still-unnumbered sunspot region in the southeast at 2:24 UTC on August 13.
  • Lead flare producer: AR4503 shared top honors with that recently emerged sunspot region in the sun’s southeast quadrant. Each produced two B flares over the past day.

Sunspot regions: Currently, our star shows five numbered active regions on its Earth-facing side. A newcomer that emerged in the northwest quadrant received its number this period: AR4509. Notably, none show strong magnetic complexity. Instead, all carry either a simpler alpha or beta magnetic configuration.

  • AR4503 (beta): This region exhibited new magnetic emergence.
  • AR4506 (beta): This region also showed new magnetic emergence.
  • AR4507 (beta): This prolific newcomer consolidated during the period.
  • AR4508 (alpha): This sunspot region remained stable.
  • AR4509 (beta): This region emerged from nowhere in the northwest.

Blasts from the sun? Observers spotted no Earth-directed coronal mass ejections (CMEs) during the past day.

Past 24 hours in space weather

Solar wind: Solar wind speeds averaged moderate levels during the period.

Bt, Bz and magnetic coupling: The interplanetary magnetic field (IMF) total strength (Bt) decreased from moderate to weak levels throughout the period. Meanwhile, the Bz component kept pointing mostly northward, much like the day before, with just a couple of weak southward peaks. As a result, forecasters expect no auroral displays in the coming days. At the end of this observation period, though, the Bz shifted slightly southward.

Earth’s magnetic field: The geomagnetic field increased from quiet to unsettled levels during our reporting period, with Kp 0-3. There were no G1 disturbances to report. At the time of this writing, the Kp index sits just at level 2.

What’s ahead? Sun–Earth forecast

Flare activity forecast: Forecasters anticipate very low levels through August 14. However, the probability of M-class flares increased from 1% yesterday to 10% today. Chances for X-class events remain at 1%. Sunspot regions AR4503, AR4506, and AR4507 drive this modest increase.

Geomagnetic activity forecast:

  • August 13: Expect mostly quiet conditions for the rest of the day.
  • August 14: Unsettled to active conditions are possible. Fast solar wind from a coronal hole should drive these conditions. Isolated G1 (minor) geomagnetic storms are possible.
  • August 15: Unsettled to active conditions may extend through the day.

A 2x2 array of four views of a totally eclipsed sun with the solar corona.
View at EarthSky Community Photos. | Joseph Melendres in La Coruña, Spain, made this collage of totality on August 12, 2026. Thank you, Joseph! The photos are still coming in! See more eclipse photos here.
Mottled face of the sun, with dark swaths here and there.
Sun news for August 13, 2026. This image shows multiple coronal holes scattered across the sun. A coronal hole is a region in the sun’s atmosphere, or corona, where the magnetic field opens out into space, letting fast solar wind escape. These regions appear dark because the escaping plasma leaves them cooler and less dense. Fast solar wind from one of these holes could stir up unsettled to active conditions at Earth on August 14. The GOES-19 SUVI instrument captured this view in its 193 angstrom wavelength channel. Image via NOAA.
The sun, seen as a large yellow sphere with dark spots, each labeled.
This image shows sun activity – with the most active regions labeled – as of 0 UTC on August 13, 2026. Original image, without labels, via NASA SDO. Courtesy of NASA/SDO and the AIA, EVE, and HMI science teams, with labeling by EarthSky. Armando Caussade posted today’s sun. Why are east and west on the sun reversed?

Sun news August 12: Woo hoo! Total solar eclipse today!

Another long-awaited total solar eclipse day is here! It’s one of nature’s grandest spectacles. The total solar eclipse path will cross Greenland, Iceland and Spain. We will cover the whole thing via livestream. Join us to follow every detail of this monumental event. And today isn’t just an eclipse day. One of the most prolific meteor showers of 2026, the Perseids, are also peaking now. Read about the Perseids. Will anyone catch a meteor streak across the sky while it’s darkened during totality? We’d hoped for a third event from the sky: a geomagnetic storm, bringing auroras. At this point, that’s not looking promising. The anticipated coronal mass ejection, or CME, either arrived as a weak glancing blow or is running late. Our fingers are still crossed. But expert forecasters currently anticipate only weak geomagnetic disturbances at eclipse time. Still, intrepid scientists will be in Iceland, hoping for auroras during the eclipse! Read about Dr. Liz McDonald’s pursuit of this dream here. Interested in the aurora forecast for Iceland at eclipse time? IcelandatNight has updates. And, as Liz says:

Even a non-sighting would be worth reporting on Aurorasaurus.org.

Past 24 hours on the sun

(11 UTC August 11 – 11 UTC August 12)

Flare activity: Solar flare activity continued at low levels with C (common) and B (weak) flares. But flare production notably increased. The sun fired a total of 16 flares over the past day, in contrast to just five the day before. This period’s tally: four C flares and 12 B flares.

  • Strongest flare: A C2.5 from AR4507 at 23:04 UTC on August 11.
  • Lead flare producer: AR4507 rapidly claimed the top spot. This recently emerged sunspot region in the sun’s southeast quadrant produced seven flares over the past day. AR4508 followed with five flares.

Sunspot regions: Our star has four numbered active regions on the Earth-facing side. None show strong magnetic complexity. Instead, all carry either a simpler alpha or beta magnetic configuration. Meanwhile, two newcomers emerged in the eastern solar hemisphere: AR4507 in the southeast and AR4508 in the northeast.

  • AR4503 (beta): This region remained stable during the period with no flare production. Rather, it showed signs of decay.
  • AR4506 (beta): This region stayed stable. It also produced one B flare in the past day.
  • AR4507 (beta): This prolific newcomer rapidly became the lead flare producer of the period.
  • AR4508 (alpha): We mentioned this active region yesterday. It still sits too close to the horizon for a complete analysis. Even so, it appears the largest on the Earth-facing solar disk.

Blasts from the sun? Observers spotted no Earth-directed CMEs during the past day.

Past 24 hours in space weather

Solar wind: Solar wind speeds increased from low to moderate levels during the period.

Bt, Bz and magnetic coupling: The interplanetary magnetic field (IMF) total strength (Bt) continued at moderate levels throughout the period. Meanwhile, the Bz component kept pointing largely northward, much like yesterday, with just a couple of weak southward peaks. The geomagnetic door stayed mostly shut. Translation: conditions weren’t promising for aurora watchers over the past day. At the end of this observation period, the Bz held its north orientation.

Earth’s magnetic field: The geomagnetic field increased from quiet to unsettled levels during our reporting period, with Kp 0-3. The Kp index climbed slightly above level 3 during one three-hour synoptic period. Notably, no G1 disturbances occurred. At the time of this writing, the Kp index sits just below level 3.

Sun news for August 12, 2026. NOAA’s CCOR-1 coronagraph aboard the GOES-19 spacecraft spotted the moon drifting through its field of view, right on schedule for today’s total solar eclipse. CCOR-1 blocks the sun’s blinding face with an occulting disk so it can watch the faint outer corona for coronal mass ejections (CMEs). Today, though, the moon takes the spotlight. Image via NOAA.

Sun news August 11: Huge sun blast aimed at Earth

Today’s top story: Remember that fiery prominence we reported on August 8? It hurled a huge amount of solar plasma into space. Now that material is aimed right at us here on Earth. The solar material and magnetic fields, known as a coronal mass ejection or CME, should create disturbances in Earth’s magnetic field tomorrow, August 12. In fact, this CME could spark G1 (minor) and even G2 (moderate) geomagnetic storming. So consider yourselves alerted, aurora watchers at higher latitudes!

Past 24 hours on the sun

(11 UTC August 10 – 11 UTC August 11)

Flare activity: Solar flare activity stayed at low levels with faint C (common) and B (weak) flares during the period. Observers reported a total of five flares over the past day: two Cs and three Bs.

  • Strongest flare: A C2.4 from AR4505 at 13:16 UTC on August 10. It was too small to provoke a radio blackout.
  • Lead flare producer: AR4505, the recently emerged sunspot region on the sun’s northwest limb, continued dominating over the past day. It sparked three of the five flares of the period, including the strongest. This region emerged on August 9, then quickly rotated out of view as the sun’s rotation carried it to the far side. Hello and goodbye, AR4505!

Sunspot regions: Currently, the Earth-facing solar disk displays just three numbered active regions. Notably, all show either a simpler alpha or beta magnetic configuration. In addition, a newcomer emerged in the northeast quadrant, now officially numbered AR4506.

  • AR4505 (beta): This region has rotated out of view.
  • AR4503 (beta): This region showed a growing sunspot. It also produced one B flare in the past day.
  • AR4504 (alpha): This region decayed to a unipolar group.
  • AR4506 (beta): This region showed stable behavior with no flare production.

Blasts from the sun? Observers spotted no new Earth-directed CMEs during the past day. But two CMEs from August 8 remain under analysis for potential Earth impact in the coming days.

Past 24 hours in space weather

Solar wind: Solar wind parameters continued a gradual return to background conditions. Speeds decreased from moderate to low levels by the end of the period.

Bt, Bz and magnetic coupling: The interplanetary magnetic field (IMF) total strength (Bt) held at moderate levels during the period. Meanwhile, the Bz component continued pointing largely northward throughout the reporting period, with just a couple of weak southward peaks. In other words, the geomagnetic door stayed mostly shut. Translation: conditions weren’t promising for aurora watchers over the past day. At the end of this observation period, though, the Bz shifted slightly to a weak south orientation. A south orientation is better for aurora prospects.

Earth’s magnetic field: The geomagnetic field held at quiet levels during our reporting period, with Kp 0-1. The Kp index climbed slightly above level 1 but never reached level 2. No G1 disturbances to Earth’s magnetic field occurred during this period. At the time of this writing, the Kp index sits just below level 1.

What’s ahead? Sun–Earth forecast

Flare activity forecast: Forecasters anticipate very low levels through August 12. Activity decreased as AR4505 rotated beyond the limb. The remaining regions, AR4503, AR4504, and AR4506, are simple and stable. The probability of M-class flares dropped from 25% yesterday to only 5% today. Likewise, X-class events are unlikely at 1%.

But keep an eye on the sun’s eastern horizon. A newcomer, not yet numbered, is showing its nose on that horizon. It looks much larger in extent than the other sunspot regions currently on the Earth-viewed disk. We will keep observing this region to find out what it might have in store.

Geomagnetic activity forecast:

  • August 11: Anticipate quiet conditions for the rest of the day (Kp 3 or below). Moderate to background solar wind conditions should continue.
  • August 12: Expect unsettled-to-active conditions, with the potential for an isolated active period that may bring G1 (minor) and even G2 (moderate) geomagnetic storming. The arrival of the CME from the August 8 filament eruption drives this outlook.
  • August 13: Anticipate quiet-to-unsettled conditions, with the potential for Kp up to 4, as CME effects start to wane.
Sun news for August 11, 2026. A chunk of sun stuff (solar materials and magnetic fields) from the August 8 solar eruption should begin disturbing Earth’s magnetic field on August 12. Aurora alert! This image is a WSA-ENLIL model run from NOAA’s Space Weather Prediction Center. The model maps solar wind density and speed. Notice Earth’s location (the green dot), in the path of the blast. Image via NOAA.
Sun news for August 11, 2026. This video from the SOHO LASCO C2 coronagraph shows the coronal mass ejection (CME) that erupted on August 8 and is now headed toward Earth. LASCO C2 blocks the sun’s blinding face with an occulting disk, revealing the faint outer corona and the plasma blasting outward. This is the huge cloud of solar material expected to reach us on August 12, potentially sparking G1 or even G2 geomagnetic storms. Image via NASA/ESA SOHO.
Sun news for August 11, 2026. This aurora forecast from NOAA’s Space Weather Prediction Center uses the OVATION model to predict tomorrow night’s auroral oval. The red zones mark the highest likelihood of auroras, while green and yellow show where displays grow fainter. The forecast reflects the arrival of the August 8 CME, which could spark G1 or even G2 geomagnetic storms. Image via NOAA.

Sun news August 10 (UTC): Quiet sun has a slight uptick in flares

The newly numbered sunspot region AR4505 – on the sun’s northwest limb – wasted no time making its presence felt over the past day. It produced a steady stream of small C (common) flares beginning in mid-afternoon on August 9. The strongest was a C1.8 at 16:30 UTC. That’s a modest flare by the sun’s standards. Even so, it pushed solar activity overall back to low levels. Meanwhile, the solar wind environment around our planet continued to settle following the big blast of solar materials and magnetic fields (a coronal mass ejection or CME) that swept past Earth early on August 8. Looking ahead, forecasters are watching two CMEs that erupted on August 8. They could spark G1 (minor) geomagnetic storming, keeping aurora watchers at higher latitudes on alert.

Past 24 hours on the sun

(11 UTC August 09 – 11 UTC August 10)

Flare activity: Solar activity returned to low levels (from very low) during the period. Observers recorded a total of 18 flares over the past day: 6 Cs (common) and 12 Bs (weak).

  • Strongest flare: A C1.8 from AR4505 (N15W75) at 16:30 UTC on August 9. As a C-class event, it did not produce a radio blackout.
  • Lead flare producer: A newly emerged sunspot region on the sun’s northwest limb, AR4505, dominated the past day. It fired 14 of the day’s 18 flares, including 5 of the 6 C-class events. The region emerged rapidly after 15 UTC on August 9. It then immediately began producing continuous small flares.

Sunspot regions: The Earth-facing solar disk displayed three numbered active regions during the past day. Overall, the disk now looks notably sparse. Several regions have now rotated beyond the sun’s western limb.

  • AR4505 (N16W79, beta): The newest region on the disk emerged rapidly after 15 UTC on August 9. Despite its relatively simple beta magnetic configuration, it quickly became the most active region, producing continuous small C and B flares. But it already sits near the sun’s northwest limb (W79). So it’ll soon rotate out of view.
  • AR4503: This region sits in the sun’s southeast quadrant and has a simple alpha magnetic configuration. It remained stable and quiet throughout the past day.
  • AR4504: This region also sits in the sun’s southeast quadrant and has a beta magnetic configuration. It grew slightly over the past day. Still, it produced only B flares.
  • Finally, AR4498, AR4500, and AR4502 were carried off the sun’s western limb by the sun’s rotation, over the past day. Solar Orbiter PHI imagery suggests no significant regions returning from the far side during our forecast window.

Blasts from the sun? Observers spotted no new Earth-directed CMEs during the reporting period. But two CMEs from August 8 remain under analysis for potential Earth impact in the coming days.

Past 24 hours in space weather

Solar wind: Solar wind parameters reflected a gradual return to background conditions following the CME passage early on August 8. Speeds gradually increased to moderate levels by the end of the period.

Bt, Bz and magnetic coupling: The interplanetary magnetic field (IMF) total strength (Bt) started the period at a moderate level. It then decreased steadily on August 9. It held that level through the remainder of the past day. Meanwhile, the Bz component pointed largely northward during our reporting period. That kept the geomagnetic door mostly shut. Translation: Conditions weren’t promising for aurora-watchers over the past day.

Earth’s magnetic field: The geomagnetic field ranged from quiet-to-unsettled levels during our reporting period, with Kp values remaining below 4. The waning influence of the August 8 CME, combined with the largely northward Bz, allowed Earth’s magnetic field to settle.

Sun news for August 10, 2026. This video shows the sun yesterday and today. It opens with a global view, then zooms in on the past day’s primary flare producer, active region AR4505. This newcomer emerged rapidly on August 9 and immediately began firing a steady stream of small flares, 14 in the past day alone. The 2 wavelengths shown here reveal different layers of the sun: 304 angstroms shows the sun’s cooler chromosphere, while 131 angstroms highlights the hotter plasma of flaring regions. NASA’s Solar Dynamics Observatory (SDO) captured these views. Image via NASA SDO.

Sun news August 9 (UTC): Sun blast sweeps Earth, sparking auroras

Earth’s magnetic field lit up overnight. A coronal mass ejection (CME) that left the sun on August 4 swept past our planet. It drove geomagnetic storming to G2 (moderate) levels. While summer twilight limited viewing for Northern Hemisphere observers, the long winter darkness of the Southern Hemisphere offered front-row seats to the show. Observers at higher latitudes, across northern Scotland, Scandinavia, and southern Canada, might have glimpsed faint auroras as conditions peaked. But we now know that the Southern Hemisphere did see dynamic aurora, captured by webcam at the South Pole. The strongest interval arrived between 18 to 21 UTC on August 8, when Kp hit 6. Meanwhile, the CMEs from August 3 appear to have passed with little effect.

Past 24 hours on the sun

(11 UTC August 08 – 11 UTC August 09)

Flare activity: Solar activity remained at very low levels, with only B-class flares observed. This was the quietest 24 hours in recent days.

  • The strongest flare was a B7.6 from sunspot regioin AR4504, peaking at 8:48 UTC on August 8. As a B-class event, it produced no radio blackout.
  • Other flares: Observers recorded seven additional B-class flares, all below B5. AR4498 led by count with four flares (B4.8, B3.4, B3.4, B3.0). Meanwhile, AR4504 contributed three events (B7.6, B4.2, B3.0) and AR4502 produced one (B4.9).
  • No C-class, M-class, or X-class flares occurred.

Sunspot regions: The Earth-facing solar disk displayed five numbered active regions. All stayed relatively simple and quiet, either stable or showing signs of decay.

  • AR4504 (S19E39): This newly numbered region emerged during the period. It produced the strongest flare of the day, a B7.6. It shows a simple alpha/beta magnetic configuration with very small, weak spots.
  • AR4498: This region led by flare count, producing four B-class flares. However, it maintained a simple magnetic configuration and showed no signs of significant growth.
  • AR4502: This region contributed one B-class flare. It remained stable with simple unipolar spots.
  • The remaining two numbered regions stayed quiet and stable, contributing no notable activity. In fact, all five regions consist of small, weak spots, either unipolar or simple bipolar. None display complex delta configurations. And, what’s more, current Solar Orbiter PHI imagery of the far side suggests no significant returning regions during the forecast period.

Blasts from the sun? Two filament eruptions occurred during the period. Both produced CMEs with potential Earth-directed components. No flare-associated CMEs appeared, consistent with the very low flare activity.

Past 24 hours in space weather

Solar wind: Solar wind parameters reflected the gradual arrival of the August 4 CME, beginning at approximately 5:50 UTC on August 8. Speeds rose from a sluggish 250 km/s to an average of about 350 km/s. That’s modest for a CME passage. Even so, the strong magnetic field embedded within the structure proved sufficient to drive significant geomagnetic activity.

Bt, Bz and magnetic coupling: The total interplanetary magnetic field (IMF) strength climbed from a quiet 2–4 nT to a peak of 19 nT at approximately 10:02 UTC on August 8. It then averaged around 15 nT for the remainder of the period. Meanwhile, the Bz component experienced two sustained intervals of strong southward deflection. The first lasted roughly 3 hours, with a minimum of -18 nT, starting around 09:00 UTC. The second lasted over 5 hours, with a minimum of -17 nT, starting around 16:15 UTC. These prolonged southward Bz intervals drove the G2 storming.

Earth’s magnetic field: Earth’s magnetic field ranged from quiet to G2 (Moderate) geomagnetic storm conditions over the past day. The period began quietly before the CME arrival. Conditions then escalated through unsettled and active levels (Kp 3–4) during the morning hours of August 8. They reached G1 (minor) storm levels (Kp 5) by midday on August 7. Finally, they peaked at G2 (Moderate) storm levels (Kp 6) during the 18-21 UTC interval on August 8, coinciding with the second deep southward Bz excursion. At Kp 6, aurora may have appeared over locations such as Toronto, Chicago, Boston, and northern England. However, summer twilight at high northern latitudes likely limited visual observations.

Sun news for August 9, 2026. An all-sky webcam at Davis Station in Antarctica captured these auroras overnight on August 8-9, 2026. The display came as a blast of solar materials and magnetic fields – called a coronal mass ejection or CME – swept past Earth, driving geomagnetic storms. Image via the Australian Antarctic Division.
Sun news for August 9, 2026. This video shows a prominence erupting westward off the sun, captured by the GOES-19 SUVI instrument in its 304 angstrom wavelength channel. The sun is still hurling plasma into space, and perhaps part of this material is coming our way. Specialists are analyzing the eruption now, and we await the results. Stay tuned! Image via NOAA.

Sun news August 8: Is a CME striking Earth now?

The bursts of solar material our star hurled into space on August 3, 4, and 5 – known as coronal mass ejections, or CMEs – were expected to arrive late on August 7. But they didn’t arrive as expected. The solar wind, interplanetary magnetic field (IMF), and Bz component all stayed at low levels throughout the day yesterday. Then, early this morning (August 8), things changed. All these parameters began to increase at around 6 UTC on August 8. So will this uptick bring storming levels? Forecasters anticipate mild disturbances to Earth’s magnetic field, up to active levels (around Kp 4; the planetary K index is one way to indicate the magnitude of geomagnetic storms). Even so, isolated G1 geomagnetic storming (that’s a minor storm, equivalent to a Kp5) cannot be ruled out.

Past 24 hours on the sun

(11 UTC August 7 – 11 UTC August 8)

Flare activity: Sun activity stayed very low over the last 24 hours. Our sun produced only B (weak) flares over the past day and five B flares in total.

  • The strongest flare was a B7.6 from sunspot region AR4504 in the southeast at 8:58 UTC on August 8.
  • Lead flare producer: Active sunspot region AR4504 was the only flare producer of the period, firing all five B flares.

Sunspot regions: Our sun shows four numbered active regions today on the side we see from Earth. The newcomer in the southeast, which we reported yesterday as already producing a B-flare, now has an official number: AR4504. Notably, it is the only one showing interesting magnetic complexity. It is small in extent, but it carries a beta-gamma configuration. The rest of the numbered regions on the solar disk stay mostly stable, with signs of decay, in alpha or beta configurations.

Blasts from the sun? Observers spotted no new CMEs in available coronagraph imagery over the past day.

Past 24 hours in space weather

Solar wind: Solar wind speeds stayed at low levels during most of the period. But, starting at 6 UTC this morning, August 8, speeds began increasing to moderate-low levels.

Bt, Bz and magnetic coupling: The total interplanetary magnetic field IMF continued at weak levels late yesterday and early today. Then, at around 6 UTC this morning, the IMF increased to strong levels. Meanwhile, the Bz component mostly showed weak northward peaks during the past day. At around 6 UTC on August 8, it strengthened, still pointing northward. It has held there as of this writing at 11 UTC on August 8.

Earth’s magnetic field: The geomagnetic field continued at very low levels (Kp 0-1) throughout the past day. At the time of this writing, the Kp index sits above level 1.

Sun news for August 8, 2026. A coronal mass ejection (CME) is a massive eruption of solar material and magnetic fields from the sun. The sun has kept up a steady run of these eruptions this week, mostly from lifting filaments. This video from the SOHO LASCO C2 coronagraph shows CMEs blasting away from the sun on August 7. Image via NASA/ ESA SOHO.
Sun news for August 8, 2026. This video follows a twisting filament from the end of August 7 into the beginning of August 8. It opens on the full solar disk, then zooms in on the filament itself. Filaments are long ropes of solar material suspended above the surface by magnetic fields. When they twist and destabilize like this, they can lift off and hurl plasma into space. The GOES-19 SUVI instrument captured the sequence in its 304-angstrom wavelength channel. Image via NOAA.

Sun news August 7: Sun’s tiny whirlpools finally revealed

Today’s top story: Amazing images of the solar photosphere! The Daniel K. Inouye Solar Telescope, the world’s largest solar telescope at 4 meters (13 feet) in diameter, captured them. On August 5, 2026, the U.S. National Solar Observatory in Hawaii announced the accomplishment. The closest image resolves detail on an area of about 100 kilometers (about 60 miles), revealing structure never observed before. What did they find? Researchers spotted the signature of solar Kelvin-Helmholtz instability (explanation of what that is, above). To do it, the researchers enhanced the images using computer simulations, which offer a clear view of the phenomenon. In their report, they described it this way: Kelvin-Helmholtz Instability occurs when two fluids slide past each other at different velocities, creating a shear at the interface. Small disturbances then grow into striking wave-like or spiraling vortices that look like breaking ocean waves. Investigators had anticipated this process on the sun. But – until now – they’d never seen it this clearly.

Past 24 hours on the sun

(11 UTC August 6 – 11 UTC August 7)

Flare activity: Sun activity continued at very low levels. The sun “sparked” eight times (for a total of eight flares). Our sun produced only one C (common) flare over the past day. The remaining seven were faint B (weak) flares.

  • Strongest flare: A C1.0 from sunspot region AR4503 in the southeast at 19:26 UTC on August 6.
  • Lead flare producer: Active sunspot region AR4500 in the northwest reached the top with three B flares. Meanwhile, AR4502 followed just behind with two B flares.

Sunspot regions: The Earth-facing side of the solar disk shows three numbered active regions today. In addition, a newcomer in the southeast, as yet unnumbered, has already produced a B flare. All the numbered regions on the disk show either simpler alpha or beta configurations. And all are mostly stable and show signs of decay.

  • AR4498 (alpha): This region stayed stable but decayed into a unipolar sunspot region.
  • AR4502 (beta): This region continued showing flux consolidation.
  • AR4503 (beta): This region showed new flux production and consolidation. It also fired the only C flare of the period.

Blasts from the sun? Observers spotted no new coronal mass ejections (CMEs) in available coronagraph imagery. However, the anticipated CMEs the sun hurled out on August 3 may start reaching Earth late on August 7. Forecasters anticipate minor glancing blows, with enhancements possibly continuing through August 9.

Past 24 hours in space weather

Solar wind: Solar wind speeds decreased from moderately-low to low levels during this period. There was no significant space weather to report. That should change later today with the arrival of the expected CMEs.

Bt, Bz and magnetic coupling: The total interplanetary magnetic field continued at weak levels during the period. Meanwhile, the Bz component pointed southward late on August 6. Then, at around 16:30 UTC on August 6, it shifted northward. It stayed there until 2 UTC on August 7, when it returned to a southward orientation. It has held that direction until the time of this writing. Even so, both north and southward peaks stayed weak.

Earth’s magnetic field: The geomagnetic field held at very low levels (Kp 0) during this period. At the time of this writing, the Kp index sits slightly above level 0. All this should change with the arrival of chunks of solar material, which might deliver glancing blows and bring enhancements starting later today, August 7.

Sun news for August 7, 2026. This animated image compares a real observation from the Daniel K. Inouye Solar Telescope with a synthetic image generated by state-of-the-art, physics-based computer simulations. The remarkable agreement between the two images allowed scientists to confirm the origin of what’s called the Kelvin-Helmholtz instability, tiny whirlpool-like swirls on the sun’s surface. When simulations match observations this closely, researchers can trust the physics behind them. This new understanding opens the door to knowing how magnetic energy builds and moves on our star (and perhaps other stars). Images via NSF/ NSO.
This scale zoom shows the superior resolution of the Daniel K. Inouye Solar Telescope, in contrast to space-based observatories. Starting with an 80,000-kilometer view from NASA SDO’s Helioseismic and Magnetic Imager (HMI), it zooms down to individual convective granules, intergranular lanes, and fine magnetic features at 668 and 416 nanometers. It was at this scale that researchers have now spotted the tiny whirlpool-like swirls of Kelvin-Helmholtz instability for the first time. Images via NASA SDO/ NSF/ NSO.

Sun news August 6: Confirmed, solar material approaching Earth

It’s now confirmed. Several bursts of solar material – coronal mass ejections, or CMEs – are heading our way at Earth. The first arrival should come on August 7. And effects may extend through August 9.

These are all the chunks of solar stuff we’ve been reporting after several filament eruptions during the week, from August 3 to yesterday. These are weak, faint CMEs, but their impact could be outsized because they’re arriving one after another. Combined with fast solar wind from a coronal hole, they could disturb our magnetic field up to G1 (minor) geomagnetic storm levels.

Past 24 hours on the sun

(11 UTC August 5 – 11 UTC August 6)

Flare activity: Sun activity dropped to very low levels. Our star produced only B-class flares over the past day, five in total.

  • Strongest flare: A B9.2 from active region AR4498 at 15:30 UTC on August 5.
  • Lead flare producer: Active sunspot region AR4498 produced two of the five B flares of the period. Meanwhile, AR4499, AR4500, and AR4502 each produced one.

Sunspot regions: Currently, the sun shows four numbered active regions on its Earth-viewed side. The newcomer we reported yesterday now has an official number, AR4503. All the numbered regions on the disk show beta configurations. Moreover, all are mostly stable and show signs of decay.

  • AR4498 (beta): This region decayed a little.
  • AR4499 (beta): This region is decreasing in length and area. It is also ready to depart to the far side.
  • AR4502 (beta): This region showed consolidation in its trailing spots.
  • AR4503 (beta): This region now sits too close to the southeast horizon for a complete analysis. Observations will continue.

Blasts from the sun? Observers spotted no newer CMEs during the past 24 hours. However, the CMEs the sun hurled into space starting on August 3 may begin arriving at Earth on August 7. They should provide minor glancing blows that could continue through August 9.

Past 24 hours in space weather

Solar wind: Solar wind speeds averaged moderate to moderate-low levels during the whole period. There was no significant space weather to report.

Bt, Bz and magnetic coupling: The total interplanetary magnetic field continued at weak levels during the period. Meanwhile, the Bz component pointed mostly southward throughout most of the period. Even so, the southward peaks stayed weak. As a result, no G1 (minor) enhancements occurred.

Earth’s magnetic field: The geomagnetic field held at very low levels (Kp 0–1) during the period. At the time of this writing, the Kp index sits slightly above level 1.

Sun news for August 6, 2026. This model from NOAA’s Space Weather Prediction Center tracks several coronal mass ejections (CMEs) now heading toward Earth. The model maps solar wind density and speed as material travels out from the sun, with Earth marked along its orbit. You can clearly see several clouds of solar material approaching our planet. These faint CMEs, hurled out during this week’s filament eruptions, should begin arriving on August 7. Their effects may continue through August 9. Image via NOAA.
Sun news for August 6, 2026. This video from the SOHO LASCO C2 coronagraph shows the coronal mass ejection (CME) that erupted alongside yesterday’s filament eruption. LASCO C2 blocks the sun’s blinding face with an occulting disk, revealing the faint outer corona and the plasma blasting outward. This CME joins several others now heading our way, with arrivals expected from August 7 through 9. Image via NASA/ESA SOHO.

Sun news August 5: Time for a Solar Cycle 25 update

It’s time for a new Solar Cycle 25 update! NOAA has now released the sunspot number – a measure of long-term solar activity – for July 2026. The number came in at 78.1, a decrease from June 2026’s 94.4. Why the drop? We did see a monster sunspot region like AR4493, plus the production of an X flare and a number of M flares. However, we only saw one day when the solar disk had 10 or more numbered sunspot regions on the side we see from Earth. And on most days through July, we counted just two or three. All of this contributed to the lower final sunspot number. Meanwhile, the peak of Solar Cycle 25 remains August 2024, with a sunspot value of 216.

Past 24 hours on the sun

(11 UTC August 4 – 11 UTC August 5)

Flare activity: With only C-class and B-class flares fired over the past day, activity stays at very low. Our star produced a total of 11 flares: five C-class and six B-class. Compared to only three minor flares yesterday, that’s a noticeable jump.

  • Strongest flare: A C1.7 from active region AR4502 at 6:22 UTC on August 5.
  • Lead flare producer: A newcomer sunspot region on the southeast shoulder of the horizon, as yet unnumbered, topped the list. It fired four flares during this period: two Cs and two B flares.

Sunspot regions: The side of the solar disk we see from Earth shows five numbered active regions today.

  • AR4498 (beta): This region lost its delta magnetic complexity. Today it shows a simpler beta configuration. It remains the largest in extent, though it suffered some fragmentation in its leader sunspot.
  • AR4496 (alpha): This region has fully rotated to the far side.
  • AR4499 (beta): This region showed signs of decay during this period.
  • AR4500 (beta): This region exhibited some decay in its leading spot.
  • AR4501 (beta): This region showed losses in its trailing spots.
  • AR4502 (beta): This region continued showing significant growth over the past 24 hours.

Blasts from the sun? Observers continued to spot several coronal mass ejections (CMEs) during the past 24 hours. All of these CMEs came from lifting filament eruptions. Modeling and analysis continues. A minor glancing blow from this sun-stuff might occur on August 9.

Past 24 hours in space weather

Solar wind: Solar wind speeds averaged moderate-low levels during the whole period. There was no significant space weather to report.

Bt, Bz and magnetic coupling: The total interplanetary magnetic field showed weak strength during the period. Meanwhile, the Bz component pointed mostly northward throughout, with a few southward peaks. All in all, both orientations stayed weak.

Earth’s magnetic field: The geomagnetic field held at very low levels (Kp 0–1) during the period. At the time of this writing, the Kp index sits slightly above level 0.

Sun news for August 5, 2026. This chart from NOAA’s Space Weather Prediction Center tracks the sunspot number – a measure of long-term solar activity – through Solar Cycle 25. The black line with diamonds shows monthly values, while the purple line smooths them into the cycle’s overall shape. The pink shaded band at right marks the predicted range going forward. Solar Cycle 25 peaked in August 2024 at a sunspot value of 216. Since then, the cycle has been on its declining phase. The newly announced figure for July 2026 is 78.1, down from 94.4 in June. Image via NOAA/ Space Weather Prediction Center.
The face of the sun, with a glowing loop expanding off one edge and dissipating into space.
Sun news for August 5, 2026. A gorgeous prominence caught our eye over the past day. These long ropes of solar material arc above the sun’s edge, held aloft by magnetic fields. Even with flare activity at very low levels, our star still knows how to put on a display. Image via NOAA.

Sun news August 4: Several bursts of sun-stuff fired from our star

Sun activity returned to very low levels in terms of flare production, with just one C-class (common) flare and two B-class (weak) flares fired over the past day. However, the solar disk still put on a show. Intense action from fiery filaments – long ropes of solar material – caused several eruptions.

Observers spotted several chunks of solar stuff, or coronal mass ejections (CMEs), soaring into space during these events. So far, specialists don’t foresee any major impacts to Earth, but modeling and analysis is ongoing. Stay with us and we will keep you updated.

Past 24 hours on the sun

(11 UTC August 3 – 11 UTC August 4)

Flare activity: Flare activity dropped to very low levels and production decreased overall. Our star produced only three minor flares: one C-class (common) and two B-class (weak) flares during the period.

  • Strongest flare: A C1.4 from active region AR4498 at 11:33 UTC on August 3.
  • Lead flare producer: AR4498 topped the list, firing two flares during this period: the C1.4 mentioned above, plus a B-class flare. Meanwhile, an incoming, as-yet-unnumbered region sparked the second B flare of the period.

Sunspot regions: Currently, the solar disk displays 6 numbered active regions on the side we see from Earth.

  • AR4498 (beta-delta): This region kept its delta configuration. It also remained the largest and most magnetically complex on the visible disk. For now, it’s attracting all the attention.
  • AR4496 (alpha): This sunspot region now sits over the west horizon, poised to depart to the far side. It showed stability with a simpler alpha configuration.
  • AR4499 (beta): This region showed growth in its trailing spots.
  • AR4500 (beta): This region produced no flare activity and shows some signs of decay.
  • AR4501 (beta): This region showed the most growth during the period. Therefore, it warrants monitoring in the coming days.
  • AR4502 (beta): This region showed significant growth over the past 24 hours.
  • AR4492: All gone. It has fully rotated out of view.

Blasts from the sun? Observers spotted several coronal mass ejections (CMEs) during the past 24 hours, associated with lifting filament eruptions. So far, they have detected no clearly Earth-directed CMEs. Nevertheless, modeling and analysis continue.

Past 24 hours in space weather

Solar wind: Solar wind speeds averaged moderate-low levels during the whole period, as effects from the CME began to wane.

Bt, Bz and magnetic coupling: The total interplanetary magnetic field was moderate for most of the period. Meanwhile, the Bz component pointed mostly southward during the whole period. That orientation opened the door for significant energy transfer into Earth’s magnetosphere.

Earth’s magnetic field: The geomagnetic field ranged from quiet to active levels (Kp 2–4) during the period. Effects of the passing CME showed up as a Kp 4 level. Conditions first reached that threshold at 21 UTC on August 3. At the time of this writing, the Kp index sits at level 3, as CME enhancements continue to wane.

Sun news for August 4, 2026. Sun activity is low, with just 1 C (common) and 2 B (weak) flares fired over the past day. However, several filament eruptions on the solar disk hurled plasma into space. Could any of the sun-stuff be heading our way? Image via NOAA.

Sun news August 3: Big sun blast sparks geomagnetic storm and auroras

Earth’s magnetic field lit up yesterday from a huge blast of solar material and magnetic fields from the sun. A coronal mass ejection (CME) slammed into our planet’s magnetosphere around midday on August 2. Forecasters believe the impact was either a slow-moving CME launched on July 27, or a glancing blow from a July 30 eruption. Either way, it drove geomagnetic storm conditions to G2 (moderate) levels. As a result, auroral displays became possible across northern Scotland, Scandinavia, and similar high-latitude locations. Did you see them? Post your photo to our community page!

Past 24 hours on the sun

(11 UTC August 2 – 11 UTC August 3)

Flare activity: The sun itself took a breather over the past day. Flare production remained at low levels, with only minor C-class (common) or weaker flares recorded. Observers logged 2 C-class and 2 B-class (weak) flares during the period.

  • Strongest flare: NOAA noted a C6.3 flare from an area around the northwest limb at 05:35 UTC on August 2 as the largest event of the broader 24-hour summary. But it fell just before our reporting window. Within the 11 UTC to 11 UTC window, the strongest flare was a C1.3 from sunspot region AR4492 at 14:41 UTC on August 2.
  • In addition, sunspot region AR4498 fired a C1.0 flare at 00:39 UTC on August 3.

Sunspot regions: The Earth-facing solar disk displayed approximately seven to 10 numbered active regions during the period. The SIDC identified ten groups, while NOAA focused on the most significant ones.

  • AR4498 (beta-delta): This region continued as the largest and most magnetically complex on the visible disk. It features a moderately large lead spot, plus a cluster of peripheral minor spots to the south that includes a weak delta configuration. As it approaches center disk, it remains the primary source for elevated flare potential.
  • AR4499: Located just northeast of AR4498, this region drew the SIDC’s attention as the most magnetically complex (beta-delta). It also produced most of the minor flaring activity. But it showed overall weakening in recent imagery.
  • AR4501 (beta): This region showed the most growth during the period. So it warrants monitoring in the coming days.
  • AR4492: This region produced the C6.3 and C1.3 flares. But it now sits at the extreme northwest limb and is rotating out of view.
  • Finally, a moderate-size bipolar region in the southwest quadrant, likely AR4496, provided some additional flare potential. Even so, it showed recent decay in its trailing portion. The remaining regions stayed relatively simpler, smaller and largely stable, with only minor changes.

Blasts from the sun? Observers spotted no Earth-directed coronal mass ejections (CMEs) in available coronagraph imagery during the period. They did catalog one non-Earth-directed CME.

Past 24 hours in space weather

Solar wind: A CME-driven interplanetary shock dramatically reshaped solar wind conditions when it arrived at 11:29 UTC on August 2. Before the shock, solar wind speeds sat at a sluggish 290 km/s. The shock then drove speeds sharply to about 350 km/s. From there, they climbed unsteadily to a peak of 440 km/s by 17:17 UTC. Afterward, speeds eased below 400 km/s following 22:00 UTC. Solar wind density also jumped from 4 to 33 particles per cubic centimeter during the shock arrival.

Bt, Bz and magnetic coupling: The total interplanetary magnetic field jumped from 4 nT to about 14 nT at shock onset. It eventually peaked at a strong 22 nT around 15:00 UTC. Meanwhile, the Bz component initially dropped to –8 nT. Then it plunged to –17 nT at 15:02 UTC. That deeply southward orientation opened the door for significant energy transfer into Earth’s magnetosphere. By around 19 UTC, the Bz rotated northward and stayed mostly moderate in strength.

Earth’s magnetic field: The geomagnetic field stayed quiet (Kp 0–2) during the first half of the past day. Then it responded vigorously to the CME arrival. Conditions escalated rapidly, reaching G2 (moderate) geomagnetic storm levels (Kp 6) between approximately 12:00–21:00 UTC on August 2. Across multiple three-hour synoptic periods, Kp ranged from 3–5, meaning active to G1 (minor) storm conditions. Notably, the peak storm interval coincided with the deeply southward Bz near 15:00 UTC. After the Bz rotated northward around 19:00 UTC, activity gradually subsided. Aurora may have appeared over locations such as Edinburgh, northern England and similar latitudes. However, short summer nights limited viewing opportunities.

Sun news for August 3, 2026. This is what an aurora looks like from space. Astronauts aboard the International Space Station (ISS) might have seen views like this last night! ISS astronauts caught this view of the aurora australis, or southern lights, on September 17, 2011. This image sequence begins over the Indian Ocean halfway between Madagascar and Antarctica. Image via NASA’s Scientific Visualization Studio (SVS).

The sun in recent days

The sun, seen as a large yellow sphere with dark spots, each labeled.
This image shows sun activity – with the most active regions labeled – as of 1 UTC on August 12, 2026. Image via NASA/ SDO.
The sun, seen as a large yellow sphere with dark spots, each labeled.
This image shows sun activity – with the most active regions labeled – as of 0 UTC on August 11, 2026. Image via NASA/ SDO.
The sun, seen as a large yellow sphere with dark spots, each labeled.
This is a quiet sun! The image shows sun activity – with the most active regions labeled – as of 3 UTC on August 10, 2026. Image via NASA/ SDO.

Earlier sun images

The sun, seen as a large yellow sphere with dark spots, each labeled.
This image shows sun activity – with the most active regions labeled – as of 6 UTC on August 9, 2026. Image via NASA/ SDO.
The sun, seen as a large yellow sphere with dark spots, each labeled.
This image shows sun activity – with the most active regions labeled – as of 7 UTC on August 8, 2026. Image via NASA/ SDO.
The sun, seen as a large yellow sphere with dark spots, each labeled.
This image shows sun activity – with the most active regions labeled – as of 4 UTC on August 7, 2026. Image via NASA/ SDO.
The sun, seen as a large yellow sphere with dark spots, each labeled.
This image shows sun activity – with the most active regions labeled – as of 5 UTC on August 6, 2026. Image via NASA/ SDO.

Sun images from our community

The sun, seen as a large yellow sphere with a mottled surface and a dent at the top edge.
View at EarthSky Community Photos. | Mario Rana in Hampton, Virginia, captured this filtered image on August 12, 2025. Mario wrote: “Hydrogen-alpha image of the sun during the eclipse in Hampton, Virginia. Maximum eclipse was only 2%. There’s a nice prominence on the southeast limb along with some nice filaments.” Thank you, Mario!
The sun, seen as a large yellow sphere with a mottled surface.
View at EarthSky Community Photos. | Jim Militello in Tucson, Arizona, captured this filtered image on August 11, 2026. Jim wrote: “Hydrogen-alpha image of the sun showing active regions, filaments and some small prominences.” Thank you, Jim!
The sun, seen as a large gray sphere with small dark spots.
View at EarthSky Community Photos. | David Hawkes in South Yorkshire, United Kingdom, captured this filtered image on August 9, 2026. David wrote: “Sunny day with some cloud. No visible sunspots in this image. Hopefully more activity will appear for the eclipse later this week.” Thank you, David!

More sun images from our community

The sun, seen as a green sphere with dark spots, each labeled.
View at EarthSky Community Photos. | Victor Rogus in Sedona, Arizona, captured this filtered image on August 8, 2026. Victor wrote: “Although there are 5 numbered sunspots, the solar disk is, in fact, nearly blank. All 5 are very small, hard to see, and all are rapidly disintegrating. Every sunspot on the Earth side of the sun is rapidly disintegrating. If this continues, the sun could become spotless this weekend. One spotless day won’t be the end of Solar Cycle 25, but it is a sign of weakening.” Thank you, Victor!
The sun, seen as a large white sphere with small dark spots.
View at EarthSky Community Photos. | Patricio León in Santiago, Chile, captured this filtered image on August 6, 2026. Patricio wrote: “Mostly blank sun. Activity at ground level. Back on Earth, a rare lull in persistent bad weather.” Thank you, Patricio!

We sometimes feature sun images obtained using hydrogen-alpha filters. Read why.

Bottom line: Sun news August 13, 2026: Yesterday’s total solar eclipse dazzled, with Spain getting the clearest views. Meanwhile, the sun quieted to only faint B flares.

Submit your photos here.

View community photos here.

Posted 
August 13, 2026
 in 
Sun

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