
The geomagnetic field was at quiet levels. Solar wind speed at SOHO ranged between 450 and 570 km/sec, averaging 483 km/sec (-99 km/sec compared to the previous day). The high latitude magnetometer at Andenes was at quiet to active levels. The above 10 MeV proton flux was at background levels all day.
Solar flux density measured at 17h UT on 2.8 GHz was 118.0 - increasing 12.7 over the previous solar rotation. The measurement at 20h UT was significantly higher than both the 17 and 23h UT measurements, making it likely that the 20h UT measurement was faulty, especially as there was no flare activity to explain the discrepancy from the expected.
The 365 day average solar flux at 1 AU was 140.07 (183 days ago). The 81 day average solar flux at 1 AU was 128.9 (41 days ago, this is 37.8% of the total SC25 solar flux range from the max 81 day average peak on September 4, 2024 at 227.3 and an average 81 day flux of 69 at solar minimum). SC25 365d peak: 195.9 on October 13, 2024.
The Potsdam WDC planetary A index was 6 (STAR Ap - based on the average of three hour interval ap indices: 5.6). Three hour interval K indices: 22121111 (planetary), 22232322 (Boulder), 43222233 (Andenes).
The background x-ray flux is at the class B4 level (GOES 19).
At the time of counting spots (see image time), spots were observed in 13 active regions using 2K resolution (SN: 220) and in 9 active regions using 1K resolution (SN: 128) SDO/HMI images.
AR 14463 [N17W54] was quiet and stable.
AR 14464 [S13W59] was mostly quiet and stable. C1 flares: C1.2 @
13:02 UT
AR 14465 [N07W09] gained spots as new flux emerged. The spots in the
northwest corner were split off into AR S12143.
New AR 14468 [N10E39] emerged on June 13 and was numbered the next
day as the region began to decay.
Spotted regions not observed (or interpreted
differently) by SWPC/USAF:
AR S12131 [S04W01] was quiet and stable.
AR S12134 [S16E33] was quiet and stable.
AR S12141 [S04E49] was quiet and stable.
New AR S12143 [N10W14] was split off from AR 14465 as new flux
emerged in both polarities.
New AR S12144 [N18E65] was observed with a tiny spot in an old plage
area.
New AR S12145 [N05E39] emerged to the south of AR 14468 with tiny
spots.
New AR S12146 [S27E26] emerged with tiny spots.
New AR S12147 [N17E79] rotated into view with a tiny spot.
New AR S12148 [S14E54] emerged with tiny spots.
AR 14466 produced a C1.5 flare at 08:55 UT while
approaching the northwest limb.
AR 14462 at the northwest limb appears to have been the source of a C1.0
flare at 12:36 UT
C2+ flares
| Magnitude | Peak time (UT) | Location | Source | Recorded by | Comment |
June 12-14: No obviously Earth directed CMEs were observed in available coronagraph imagery.
[Coronal
hole history (since October 2002)]
[Compare today's report to the situation one solar rotation ago:
28 days ago
27 days ago
26 days ago]
A recurrent negative polarity northern hemisphere coronal hole (CH1374) will be Earth facing on June 13. A positive polarity southern hemisphere coronal hole (CH1375) will rotate across the central meridian on June 13.
The geomagnetic field is expected to be at quiet to unsettled levels on June 14-17, first due to CME effects then due to effects associated with CH1375.
| Coronal holes (1) | Coronal mass ejections (2) | M and X class flares (3) |
1) Effects from a coronal hole could
reach Earth within the next 5 days. When the high speed stream has arrived
the color changes to green.
2) Effects from a CME are likely to be observed at Earth within 96 hours.
3) There is a possibility of either M or X class flares within the next 48 hours.
Green: 0-30% probability, Yellow: 30-70% probability, Red: 70-100% probability.

(Click on image for 2K resolution).
4K resolution.
Compare to the previous day's image. 0.5K image
When available the active region map has a coronal hole polarity overlay where red (pink) is negative and blue is positive.
Data for all officially numbered solar regions according to the Solar Region Summary provided by NOAA/SWPC, all other regions are numbered sequentially as they emerge using the STAR spot number. Comments are my own, as is the STAR spot count (spots observed at or inside a few hours before midnight) and data for regions not numbered by SWPC or where SWPC has observed no spots. SWPC active region numbers in the table below and in the active region map above are the historic SWPC/USAF numbers. SWPC data considered to be not sufficiently precise (location, area, classification) are colored red.
| Active region | SWPC date numbered STAR detected |
Spot count | Location at midnight | Area | Classification | SDO / HMI 4K continuum image with magnetic polarity overlays |
Comment | ||||
|---|---|---|---|---|---|---|---|---|---|---|---|
| SWPC/ USAF |
STAR | SWPC | STAR | Current | Previous | ||||||
| 2K | 1K | ||||||||||
| 14463 | 2026.06.04 2026.06.05 |
1 | 1 | 1 | N17W55 | 0030 | HSX | HSX |
![]() |
![]() |
was AR S12117 area: 0050 location: N17W54 |
| 14464 | 2026.06.04 2026.06.06 |
5 | 11 | 5 | S14W56 | 0120 | DAO | CSO |
![]() |
![]() |
was AR S12120 area: 0200 location: S13W59 |
| S12121 | 2026.06.06 | N18W58 | |||||||||
| 14466 | 2026.06.06 2026.06.09 |
N06W89 |
![]() |
was AR S12122 location: N07W87 |
|||||||
| 14465 | 2026.06.07 2026.06.08 |
10 | 26 | 14 | N08W11 | 0150 | CAI | DAI |
![]() |
![]() |
beta-gamma-delta was AR S12125 area: 0230 location: N07W09 |
| S12127 | 2026.06.09 | S07W59 | |||||||||
| S12129 | 2026.06.09 | N05W59 | |||||||||
| S12131 | 2026.06.09 | 7 | S04W01 | 0007 | BXO |
![]() |
![]() |
||||
| S12133 | 2026.06.10 | N11W41 | |||||||||
| S12134 | 2026.06.10 | 9 | 3 | S16E33 | 0015 | BXO |
![]() |
![]() |
|||
| S12135 | 2026.06.10 | S17W44 | |||||||||
| S12136 | 2026.06.11 | S15W53 | merged with AR 14464 | ||||||||
| 14468 | 2026.06.13 2026.06.14 |
5 | 9 | 5 | N10E39 | 0020 | CRO | DRO |
![]() |
![]() |
was AR S12138 area: 0030 |
| S12139 | 2026.06.13 | N21E11 |
![]() |
||||||||
| S12140 | 2026.06.13 | S05W47 |
![]() |
||||||||
| S12141 | 2026.06.13 | 5 | 1 | S04E49 | 0010 | AXX |
![]() |
![]() |
|||
| S12142 | 2026.06.13 | S17W09 |
![]() |
||||||||
| S12143 | 2026.06.14 | 12 | 7 | N10W14 | 0030 | CRI |
![]() |
||||
| S12144 | 2026.06.14 | 1 | 1 | N18E65 | 0003 | AXX |
![]() |
||||
| S12145 | 2026.06.14 | 4 | 1 | N05E39 | 0005 | BXO |
![]() |
||||
| S12146 | 2026.06.14 | 2 | S27E26 | 0003 | BXO |
![]() |
|||||
| S12147 | 2026.06.14 | 1 | N17E79 | 0001 | AXX |
![]() |
|||||
| S12148 | 2026.06.14 | 2 | S14E54 | 0002 | AXX |
![]() |
|||||
| Total spot count: | 21 | 90 | 38 | ||||||||
| Sunspot number: | 61 | 220 | 128 | (total spot count + 10 * number of spotted regions) | |||||||
| Weighted SN: | 39 | 111 | 59 | (Sum of total spot count + classification weighting for each AR. Classification weighting: X=0, R=3, A/S=5, H/K=10) | |||||||
| Relative sunspot number (Wolf number): | 67 | 121 | 102 | ||||||||
| Month | Average solar flux | International sunspot number (WDC-SILSO) |
Smoothed sunspot number (4) | Average
ap (3) |
|
|---|---|---|---|---|---|
| Measured | 1 AU | ||||
| 2024.05 | 187.7 | 191.9 | 172.1 | 149.1 (+4.6) | 23.56 (SC25 peak) |
| 2024.08 | 246.1 (SC25 peak) |
252.2 | 216.0 (SC25 peak) | 156.8 (+1.8) | 15.96 |
| 2024.10 | 221.0 | 219.6 | 165.8 | 160.9 (+1.5) (SC25 solar max) | 18.99 |
| 2025.03 | 163.7 | 162.1 | 134.2 | 135.9 (-3.9) | 15.96 |
| 2025.04 | 162.5 | 163.6 | 141.4 | 133.3 (-2.6) | 17.62 |
| 2025.05 | 135.3 | 138.3 | 78.5 | 128.6 (-4.7) | 17.26 |
| 2025.06 | 131.3 | 135.4 | 114.6 | 124.7 (-3.9) | 21.43 |
| 2025.07 | 137.8 | 142.3 | 125.9 | 122.4 (-2.3) | 11.80 |
| 2025.08 | 154.9 | 158.7 | 133.7 | 118.2 (-4.2) | 9.97 |
| 2025.09 | 154.4 | 156.0 | 129.7 | 112.9 (-5.3) | 14.02 |
| 2025.10 | 139.5 | 138.6 | 114.6 | 108.3 (-4.6) | 15.64 |
| 2025.11 | 140.3 | 137.3 | 91.7 | 106.7 (-1.6) | 21.01 |
| 2025.12 | 160.8 | 155.8 | 124.0 | (106.4 projected, -0.3) | 13.35 |
| 2026.01 | 148.7 | 144.0 | 112.6 | (102.7 projected, -3.7) | 22.47 |
| 2026.02 | 136.4 | 133.1 | 78.2 | (98.5 projected, -4.2) | 12.88 |
| 2026.03 | 131.0 | 129.7 | 85.9 | (93.9 projected, -4.6) | 15.44 |
| 2026.04 | 120.0 | 120.9 | 79.3 | (90.0 projected, -3.9) | 12.10 |
| 2026.05 | 125.4 | 128.2 | 101.4 | (88.7 projected, -1.3) | 9.8 |
| 2026.06 | 133.2 (1) | 53.1 (2A) / 113.9 (2B) / 124.1 (2C) | (86.6 projected, -2.1) | (11.7) | |
| 2026.07 | (82.2 projected, -4.4) | ||||
| 2026.08 | (80.1 projected, -2.1) | ||||
| 2026.09 | (79.1 projected, -1.0) | ||||
| 2026.10 | (77.1 projected, -2.0) | ||||
| 2026.11 | (74.3 projected, -2.8) | ||||
1) Running average based on the daily 20:00 UTC observed solar flux value
at 2800 MHz and any corrections applied to that measurement.
2A) Current impact on the monthly sunspot number based on the Boulder
(NOAA/SWPC) sunspot number (accumulated daily sunspots / month days).
2B) Boulder SN current month average to date.
2C) STAR SDO 1K Wolf number 27 day average.
3) Running average based on the quicklook and definitive Potsdam WDC ap
indices. Values in red
are based on the definitive international
GFZ Potsdam WDC ap
indices.
4) Source: WDC-SILSO, Royal Observatory
Of Belgium, Brussels

Solar activity appears to have exited the solar max phase as of February
2026 with a strong decrease in the number of sunspots observed. The northern
polar field has weakened considerably over the last months, and although
there is a chance the the field could recover over the next 1-2 years, there
is an increasing chance that solar cycle 26 will be very weak. The southern
polar field is not impressive either, however, a southern polar coronal hole
has formed early in 2026 and appears to be growing.
All 365 day smoothed sunspot numbers reached a maximum on October 11-12, 2024.
This became the peak of SC25 (365 day smoothed peaks: STAR 1K: 236.1, STAR 2K: 364.3, NOAA SN: 156.0, ISN: 163.9),
while the 365d
smoothed solar flux peaked on October 13, 2024, just 1.7% below the SC23
peak, and 62.6% above the SC24 peak.
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This report has been prepared by Jan Alvestad. It is based on the analysis of data from whichever sources are available at the time the report is prepared. All time references are to Universal Time. Comments and suggestions are always welcome.
SDO images are courtesy of NASA/SDO and the AIA, EVE, and HMI science teams.