Solar Terrestrial Activity Report

Activity chart

Last major update issued on October 5, 2023 at 03:40 UT.

Charts (* = updated daily) Data and archive
  Solar wind (*) Solar and geomagnetic data - last month (*)
  Electron fluence (*) Archived daily reports and monthly data since 2003.01 (September 3, 2023)
Solar cycle Solar cycles 23-25 (October 1, 2023) Historical solar and geomagnetic data charts 1954-2006 (April 5, 2007)
  Cycle 24-25 progress (October 1, 2023) Noon SDO sunspot count 1K image / 4K (*)
  Solar cycles 1-24 (July 1, 2020) POES auroral activity level [October 2009 - December 2012]
  Comparison of cycles 21-25 (October 1, 2023) 3rd SSN Workshop, Tucson, 2013
  Comparison of cycles 12-14, 16, 24-25 (October 1, 2023) 4th SSN Workshop, Locarno, 2014
  Solar polar fields vs. solar cycles (July 10, 2023) Cycle 25 spots (final update December 25, 2019)
  Solar cycles 24-25 transition using 365d smoothing Research: Solar Cycle 25 Started on November 17, 2019 with 365 Days Smoothing

Recent activity

The geomagnetic field was quiet to active on October 4 under the influence of effects from CH1177. Solar wind speed at SOHO ranged between 349 and 450 km/sec. The high latitude magnetometer at Andenes recorded quiet to minor storm levels.

Solar flux density measured at 20h UT on 2.8 GHz was 155.0 - decreasing 5.8 over the previous solar rotation. (Centered 1 year average SF at 1 AU - 183 days ago: 155.07. In comparison SC24 peaked on June 28, 2014 at 145.50). The Potsdam WDC planetary A index was 10 (STAR Ap - based on the mean of three hour interval ap indices: 10.0). Three hour interval K indices: 32222124 (planetary), 22332322 (Boulder), 53233235 (Andenes).

The background x-ray flux is at the class B7 level (GOES 16).

At the time of counting spots (see image time), spots were observed in 11 active regions using 2K resolution (SN: 236) and in 10 active regions using 1K resolution (SN: 167) SDO/HMI images.

Region 13448 [N13W46] was mostly quiet and stable. C1 flares: C1.5 @ 19:40 UT
Region 13450 [S19W24] decayed slowly and was mostly quiet. C1 flares: C1.2 @ 09:11, C1.3 @ 21:40, C1.7 @ 23:34, C1.3 @ 00:03 (on Oct.5) UT
Region 13451 [N17E08] decayed slowly and quietly. C1 flares: C1.5 @ 04:03 UT
Region 13452 [N10E05] decayed slowly and was mostly quiet. C1 flares: C1.8 @ 01:23, C1.3 @ 02:16, C1.4 @ 20:37 UT
Region 13453 [N10W31] decayed slowly and was mostly quiet. C1 flares: C1.8 @ 09:41 UT
Region 13454 [S11E25] was mostly quiet and stable.
Region 13455 [N27E38] decayed slowly and quietly.
Region 13456 [S32W20] gained a few spots and was quiet.
New region 13457 [S11E64] rotated into view on October 3 and was numbered by SWPC the next day.

Spotted regions not observed (or interpreted differently) by SWPC/USAF:
New region S9022 [S14E12] emerged with tiny spots.
New region S9023 [N16E21] was observed with tiny spots in an old plage area.

C2+ flares:

Magnitude Peak time (UT) Location Source Recorded by Comment
C2.5 07:56 S18W10 13450 GOES16  
C2.0 08:47 N11E14 13452 GOES16  
C3.0 09:52   13453 GOES16  

Coronal mass ejections (CMEs)

October 3-4: No obviously Earth directed CMEs were observed.
October 2: The M1 flare in AR 13455 just after noon was associated with a wide partial halo CME. Effects from this CME could reach Earth on October 5.

Coronal holes

[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 coronal hole (CH1177) in the northern hemisphere was Earth facing on September 30.

Propagation

Long distance low and medium frequency (below 2 MHz) propagation along paths north of due west over upper middle and high latitudes is poor to fair. Propagation on long distance northeast-southwest paths is poor to fair.

Forecast

The geomagnetic field is likely to be quiet to active on October 5 due to effects from a positive polarity coronal hole. A component of the October 2 CME could reach Earth on October 5 and cause unsettled to minor storm conditions that day and on October 6. Quiet conditions are likely on October 7-8.

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.

Active solar regions


(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
Magnetic
(SDO)
SWPC STAR Current Previous
2K 1K
13448 2023.09.24
2023.09.25
1 3 2 N10W46 0090 HSX HSX area: 0140

location: N13W46

S8993 2023.09.25       N17W57            
S8994 2023.09.25       S21W40            
13449 2023.09.26       N15W67           SWPC includes both AR S8993 and S8996 in this region
13450 2023.09.27
2023.09.27
13 23 14 S23W23 0110 ESO CAO location: S19W24
13451 2023.09.29
2023.09.30
8 15 6 N12E08 0070 DSO DAO area: 0110

location: N17E08

13452 2023.09.29
2023.10.01
36 38 25 N07E07 0150 EAC EAI area: 0370

location: N10E05

S9005 2023.09.30       N24W29            
13454 2023.09.30
2023.10.01
6 11 6 S16E26 0030 CRO DRO location: S11E25
13453 2023.10.01
2023.10.01
5 13 6 N07W29 0050 CAO DRO

location: N10W31

S9013 2023.10.01       N30W19            
13455 2023.10.01
2023.10.02
  2   N21E34 0002   AXX location: N27E38
S9015 2023.10.02       S34W58            
S9016 2023.10.02       S25W13          
13456 2023.10.03 1 7 3 S31W19 0010 AXX BXO area: 0018

location: S32W20

S9018 2023.10.03       N37W52          
13457 2023.10.03
2023.10.04
1 2 1 S11E62 0030 HRX HRX location: S11E64
S9020 2023.10.03       S34E26          
S9021 2023.10.03       S29E32          
S9022 2023.10.04   4 2 S14E12 0015   BXO    
S9023 2023.10.04   8 2 N16E21 0015   AXX    
Total spot count: 71 126 67  
Sunspot number: 151 236 167  (total spot count + 10 * number of spotted regions)
Weighted SN: 102 155 96  (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): 166 130 134  

Monthly solar cycle data

Month Average solar flux International sunspot number
(WDC-SILSO)
Smoothed sunspot number (4) Average ap
(3)
Measured 1 AU
2014.02 170.3
(cycle peak)
166.3 146.1 (SC24 peak) 110.5 10.70
2014.04 143.9 144.8 112.5 116.4 (SC24 solar max) 7.88
2017.09 91.3 92.3 43.6 18.2 (-1.3) 18.22
(SC24 peak)
2019.11 70.2 68.7 0.5 2.0 (-0.6)
(Solar minimum using 365d smoothing:
November 17, 2019)
4.19
2019.12 70.8 68.6 1.6 1.8 (-0.2)
(ISN 13 months smoothed
solar minimum)
3.22
2022.03 117.0 115.8 78.6 68.7 (+4.0) 10.20
2022.04 130.8 131.7 84.0 73.0 (+4.3) 11.79
2022.05 133.8 136.8 96.5 77.4 (+4.4) 7.48
2022.06 116.1 119.8 70.3 81.1 (+3.7) 8.20
2022.07 125.4 129.5 91.4 86.7 (+5.6) 9.51
2022.08 114.2 117.1 74.6 92.6 (+5.9) 10.92
2022.09 135.1 136.5 96.0 96.5 (+3.9) 12.18
2022.10 133.5 132.7 95.5 98.9 (+2.4) 11.16
2022.11 123.4 120.7 80.5 101.1 (+2.2) 9.33
2022.12 147.9 143.4 112.8 106.7 (+5.6) 10.99
2023.01 182.4 176.6 144.4 113.4 (+6.7) 8.73
2023.02 167.2 163.2 111.3 117.9 (+3.5) 14.48
(current
SC25 peak)
2023.03 157.2 155.6 123.3 121.2 (+3.3) 14.42
2023.04 145.4 146.4 96.4 (126.6 projected, +5.4) 13.40
2023.05 155.6 159.2 137.9 (132.2 projected, +5.6) 10.67
2023.06 161.7 166.8 163.4 (135.4 projected, +3.2) 8.95
2023.07  176.4 182.2 159.1 (135.8 projected, +0.4) 8.15
2023.08  153.7 157.6 114.9 (137.6 projected, +1.8) 7.19
2023.09  154.4 156.0 133.6 (141.0 projected, +3.4) 14.4
2023.10  156.8 (1)   18.8 (2A) / 145.8 (2B) / 148.0 (2C) (142.8 projected, +1.8) (8.0)
2023.11       (145.4 projected max SC25, +2.6)  
2023.12       (144.5 projected, -0.9)  
2024.01       (141.7 projected, -2.8)  
2024.02       (141.5 projected, -0.2)  
2024.03       (141.0 projected, -0.5)  
2024.04       (138.2 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 30 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 cycles 24-25

Smoothed SF and sunspot numbers

Update on the progress of solar cycle 25 as of August 20, 2023

Looking back 6 months, the 365d smoothed values for solar flux and all sunspot numbers with the exception of NOAA's, are all above their solar cycle 24 peak. The first peak of solar cycle 25 is forecast to be between July 7 and 10, 2023 (solar flux on July 7, ISN and STAR 1K and 2K all have that peak on July 9, while NOAA peaks on July 10). This is unlikely to be the final peak of SC25, however, there is a small probability that it is the actual sunspot and solar flux maximum.

--------------------------------------------------------------------------------------

This report has been prepared by Jan Alvestad. It is based on the analysis of data from whatever 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.