Friday, April 3, 2026

M1 flare triggers EVE Flare Watch

An onboard EVE flare campaign was triggered on April 2 by an M-class flare. That flare remains the highest soft X-ray activity observed by EVE since Artemis II launched on April 1. After the flare campaign completed, multiple C-class and 2 smaller M-class flares also occurred. These smaller flares were not large enough to trigger the autonomous flare campaign.


The EUV irradiance increased around the time of the X-ray flare and quickly returned to expected levels.  The baseline (non-flaring) EUV irradiance will likely decrease as the Artemis II mission continues. The sun is showing relatively large 27-day solar rotational variation in the EUV irradiance consistent with high activity. The previous solar rotation minimum occurred about 2 weeks prior to the April 2 flare, so the daily average irradiances should begin decreasing soon.  However, there remains continued potential for flare-related increases.  The NASA M2M forecasting team will be watching to ensure the safety of the Artemis mission.  




Thursday, April 2, 2026

Comet C/2026 A1 (MAPS) to reach SDO Field of View on April 4

Comet C/2026 A1 (MAPS) is heading for the Sun. The estimated trajectory in the SDO AIA field of view is shown in the figure provided by Dean Pesnell. 

The team is eagerly anticipating the comet's arrival, and we hope to see it in SDO EUV images.  


Major Flare and CME on March 30, 2026

As NASA prepares for the Artemis II launch, the NASA Moon2Mars Space Weather Analysis Office is monitoring space weather activity to ensure a safe flight for the astronauts.  

To celebrate the upcoming Artemis flight, the Sun unleashed an X1.5 flare at at 02:47UT on March 30, 2026, and there was a beautiful eruption of a coronal mass ejection (CME). Flares and coronal mass ejections are not uncommon, but they can cause some space weather effects, which is why the M2M office monitors activity. The SDO team is closely watching the data products to be sure that the forecasters have what they need.

Go Artemis! 



Monday, December 8, 2025

File Server Restoration Underway

The SDO website file server has been replaced and the data are being restored from backup.  We hope to get all of the processing scripts and associated software installed in the next couple of days. Until then, please continue to check alternate sources for SDO imagery: 

The HelioData website gives a comprehensive list of data resources for SDO, and all of the items not associated with the Goddard SDO site outage are up to date. 

 Science data from all three of the instruments are still available through the science data access points:


Additionally, there are many browse data resources available for those who want to review recent images:

Helioviewer.org has up-to-date SDO data and allows users to combine data from other missions
AIA Synoptic data - resampled data convenient for browsing  


Tuesday, September 16, 2025

File Server Outage on SDO Website

There has been a temporary outage of the browse data on the SDO Website at NASA Goddard.  Fortunately, the new HelioData website gives a comprehensive list of data resources for SDO, and all of the items not associated with the Goddard SDO site outage are up to date. 

 Science data from all three of the instruments are still available through the science data access points:



Additionally, there are many browse data resources available for those who want to review recent images:

- Helioviewer.org has up-to-date SDO data and allows users to combine data from other missions
- AIA Synoptic data - resampled data convenient for browsing  

The team has ordered the replacement parts and will prioritize the SDO website data services as soon as the equipment arrives.  We are very sorry for the inconvenience. 

Wednesday, August 20, 2025

New AI Model based on SDO Data

The new foundation model using SDO data has been released!  The Surya Heliophysics Foundation Model was trained on nine years of SDO data, and will improve predictions of solar activity such as  flares, solar wind, and irradiance.  

Surya was created by the NASA IMPACT (Interagency Implementation and Advanced Concepts Team) AI Team, and is an open-source project and is publicly available via the Hugging Face platform. 

NASA press release on Surya


Image: The process for creating Surya. Foundation models enhance the utility of NASA's Solar Dynamics Observatory datasets and create a base for building new applications.  Source: NASA/ODSI IMPACT AI Team






Wednesday, July 9, 2025

Eclipse Season #31 begins, featuring the Sun, Earth and Moon

SDO's 31st eclipse season begins at 07:21 UT on July 10, 2025, and will last until August 7.  SDO's orbit is geosynchronous, inclined relative to the Earth's axis so most of time SDO has a 24/7 view of the Sun.  However, there are times when SDO's orbit passes behind the Earth, and during these periods SDO experiences brief interruptions in its observations of the Sun.  On July 25 SDO will pass behind both the moon and the Earth on the same day!  



Because of the Earth's atmosphere, the Earth's edge appears diffuse in SDO images while the lunar edge is quite sharp.  Here are images from the the last SDO eclipse season to compare.  The left image shows a shadow caused by the Sun's light being blocked by the Earth on an SDO 1700 Å UV image.  The right image shows the sharp edge caused by the moon, which has little atmosphere.  







Wednesday, June 18, 2025

The Flare-ometer is at X-level again

Solar flares are classified using the X-ray brightness (see an explanation here), and "X class" flares are the strongest.  The sunspot and magnetic active region complex that produced many M-class and X-class flares last month is back, and the EVE "flare-ometer" is hitting the red zone again.  

EVE measures irradiance in the extreme ultraviolet (EUV), which are wavelengths slightly less energetic than X-rays. EUV variations in flux have a direct impact on the Earth's atmosphere and ionosphere, so EVE's measurements are essential for space weather forecasts.  

An image of a plot of the EVE EUV irradiance during an X-flare, along with GOES X-ray flux.

EVE has a special flare observation mode that is triggered autonomously onboard SDO.  EVE had 7 flare campaigns triggered in April, 8 in May, and so far there have been 8 in June. When combined with HMI and AIA, SDO is able to capture the magnetic structure and dynamics of space weather processes. 


HMI (magnetic field) and AIA (EUV brightness) images from 18 June 2025 showing the sunspot regions responsible for the flares.








Saturday, March 29, 2025

Four Lunar Transits April-July 2025

SDO will see 4 lunar transits between April and July 2025. Two look like the Moon is just brushing by the Sun and one is pretty nice looking.
There are lunar transits on April 27, 2025 and April 28, 2025. Here are the movies from the SDO Flight Operations Team.
April 27; Moon covers 23% of the solar disk.

April 28; Moon covers 2% of solar disk.

May 25; Moon covers 4% of solar disk.

July 25; Moon covers 62% of solar disk.

The fourth will be the longest and deepest transit in the first half of 2025.

Saturday, February 8, 2025

JSOC Repairs are Complete, Normal Data Services have Resumed

At 12 noon PT, 4 Feb 2025, the HMI/AIA JSOC at Stanford has resumed normal data services. A small fraction of the data files were lost and are being restored from a tape backup.

Congratulations to the Stanford Team for their rapid repair of the JSOC!

Thursday, January 9, 2025

JSOC Update and Schedule of Events

The JSOC repair continues. This week we have started serving 15 min cadence images from AIA and HMI for Space Weather operators and others at the SDO website https://sdo.gsfc.nasa.gov. Stanford continues to rebuild the full capability of the JSOC. Several pieces of electronics are delayed by the dreaded supply-chain issues we all thought were finally behind us. All of the science data will be available for available once the JSOC is restored.

The JSOC may be off-line, but SDO continues making observations and collecting data about our Sun during the maximum of Solar Cycle 25.

SDO continues doing all of the usual things of a satellite mission:

  1. 12/18/24: Delta-H #51
  2. 01/08/25: EVE Cruciform
  3. 01/10/25: Eclipse Season #30 Starts
  4. 01/15/25: EVE FOV (@1400 UTC) and HMI/AIA Flatfield (@1715 UTC) Calibration Manuvers
  5. 01/16/25: HGA Handover Season #30 Starts
  6. 01/22/25: Stationkeeping Maneuver #30 (@2320 UTC)
  7. 01/29/25: AIA GT/PZT Calibration (images may shake a little)
  8. 02/05/25: Eclipse Season #30 Ends
  9. 02/16/25: HGA Handover Season #30 Ends

Wednesday, November 27, 2024

Outage at the Stanford, JSOC is Offline

A cooling water line burst in the Stanford building housing the SDO HMI JSOC yesterday. Several inches of water were in the JSOC room. As of this morning it appears the flooding has been drained but things are still wet and at least one leak onto electronic equipment continued. An initial assessment is that the water affected many systems but did not provide a time for return to service.

The JSOC is currently offline while the damage is assessed and repaired. The SDO data will be stored at the DDS in New Mexico until the repairs are complete and then will be automatically delivered to the JSOC.

This means that all HMI and AIA data from the JSOC will be unavailable until repairs are completed, the JSOC restarted, and the data delivery from the DDS re-established. Science data will be produced several days after that. Near-realtime data from before 26 Nov 2024 will continue to be available on the SDO wenbsite.

We appreciate your understanding, and are grateful for the dedication and responsiveness of the Stanford team. 

Updates from the Stanford team will be posted at https://solarweb1.stanford.edu/JSOC_Emergency_Resources.html

Monday, October 28, 2024

Looking for Comet C/2024 S1 (ATLAS)

SDO images look partial today as we are off-pointed to look for the tail of Comet C/2025 S1 (ATLAS) as it goes by perihelion. This is a Kreutz comet with a perihelion distance of 1.7 Rsun (0.7 Rsun above the surface of the Sun.) The perihelion time as seen at Earth is about 11:45 UTC (7:45 UTC). We will hold the offpoint until 12:05 UTC and then return to normal pointing. HMI magnetograms and Dopplergrams are not available during the offpoint.

Wednesday, October 16, 2024

Network Outage Causes Data Problems

A cable cut in New Mexico is causing some of the SDO telemetry to be delayed to the science teams. As a result, the teams do not know the roll angle of SDO and the images appear to be rotating as we execute the HMI Roll Calibration today between 1500 and 2140 UTC (11:00 am - 5:40 pm ET). The rotation angle will be provided in due course and the science data will have the information to be correctly oriented with solar North up. Once the maneuver is finished the images will again be correctly oriented.

Thursday, June 20, 2024

Celebrate Solstice 2024 with a Solar Fireworks Show!

Today is the Summer Solstice, the longest day in the Northern hemisphere and the shortest day in the Southern. That officially happens at 20:50 UTC (4:50 pm ET). This solstice is the first day of summer in the USA.

But it has nothing to do with the Sun. The solstice is caused by the tilt of the Earth’s rotation axis to its orbit. On the other hand, we are in the maximum of Solar Cycle 25. Active region 13664 was an excellent example of how an active region should behave during a solar maximum. During the 16 days that AR 13664 was visible from the Earth in May, it produced 99 flares, including 12 X-class flares.

I produced a video of AR 13664 to celebrate the solstice. I downloaded three-color AIA images from the SDO website AIA and GOES XRS fluxes from the GOES website for days between 01 May 2024 and 16 May 2024. After removing the blank and offset images taken during an EVE cruciform, there were 1522 valid images in those 16 days (99% of the possible 15-min images). The XRS flux had 21616 points that were greater than zero.

Using the JythonMusic synthesizer, the XRS fluxes were converted to MIDI percussion sounds and then into a mp4 file. There’s a lot of different drums and cymbals in the soundtrack. XRS fluxes below a C-class flare were made into rests. When the video is quiet the Sun’s activity level is low.

The AIA images and audio file were combined to give the Solstice Celebration Video shown here.

The video starts with sporadic flares and some visible activity. Once AR 13664 starts generating flares the sound and images quickly start to resemble a fireworks finale! As AR 13664 rotates out of view the activity level drops, even though new active regions have appeared. You can also see a few non-solar things, such as the apparent rotation during a calibration roll maneuver. The flare sounds and flares in the images are not exactly in synch as the images are not frequent enough.

The solar fireworks were only the beginning. The largest geomagnetic storm in over 20 years took place on 11 May 2024. It's nice to see some geomagnetic activity after the storm-poor Solar Cycle 24. Large solar and geomagnetic activity makes it more difficult to track satellites in low-Earth orbit to keep them from colliding but that’s why we study the Sun.

AR 13664 was a fascinating feature of Solar Cycle 25!

Wednesday, April 10, 2024

Eclipse Day Transit was not as Exciting as the Total Solar Eclipse

On April 8, 2024, people along a path from Mexico thru the USA and into Canada were treated to a total solar eclipse. SDO waited until much later in the day (actiually the next day in the UT timezone) and saw this glancing lunar transit.
The Moon covered about 5% of the solar disk at 09-Apr-2024, 03:36 UTC (08-Apr-2024, 11:36 ET). It is an interesting problem to understand why the motion of SDO in its geosynchronous orbit above the Mountain timezone against the lunar velocity later in the day allowed the transit many hours after the eclipse on the ground. Perhaps the next post will explore those details.

You should check out the spectacular photos of the total solar eclipse. There was at least one prominence visible to my eyes on the limb.

Spring 2024 Calibration Maneuvers Begin Today

Today SDO will execute the EVE Field of View (at 1315 UTC, 9:15 am ET) and the HMI/AIA Flatfield (at 1630 UTC, 12:30 pm ET) calibration maneuvers. During these maneuvers SDO science data may be missing or blurred.

Wednesday, March 27, 2024

Momentum Management Maneuver (Delta-H) #49 today

SDO will execute Momentum Management Maneuver (Delta-H) #49 today. Between 1830 UTC (2:30 pm ET) and 1910 UTC (3:10 pm ET) science data may be missing or blurred.

Monday, February 5, 2024

09 April 2024 Lunar Transit (08 April for North America)

On April 8, 2024, a large swath of North America will enjoy a Total Solar Eclipse from Mazatlán up through Texas to Maine and the Maritime Provinces of Canada. Although those along the path of totality will enjoy a beautiful view of the solar corona, SDO will only see a short, almost glancing transit of the Moon across the Sun long after the TSE ends. The SDO transit starts at 03:29 UTC on 9 Apr 2024 (10:29 pm EDT on 8 Apr 2024), 7 hours after the TSE ends on the ground.

Here is a movie from the SDO Flight Dynamics Team showing the transit.

The transit will only cover 5% of the solar disk.

If you live in Mexico, USA, or Eastern Canada, please go watch the Total Solar Eclispe. They are a wonderful way to see the Sun in a different light.

Wednesday, January 24, 2024

Station Keeping maneuver #28 today

SDO will execute Station Keeping maneuver #28 today from 2315-2400 UTC (6:15-7:00 pm ET). During a maneuver SDO science data may be missing or blurred. These maneuvers are needed to maintain SDO's assigned position as it passes through the geostationary orbit belt.