Routine Space Environment Product Issued Weekly
Issued by NWS
Issued by NWS
374 FXXX06 KWNP 070256 WEKHIL :Product: 7-day Space Weather Highlights :Issued: 2026 Sep 07 0224 UTC # Prepared by the US Dept. of Commerce, NOAA, Space Weather Prediction Center # Product description and SWPC contact on the Web # https://www.swpc.noaa.gov/content/subscription-services # # 7-day Space Weather Highlights # Highlights of Solar and Geomagnetic Activity 31 August - 06 September 2026 Solar activity was at moderate levels on 02 Sep and 04-05 Sep due to three R1 (Minor) M-class flares, and low levels on the remaining days. The largest flare of the period was an M3.0 at 02/1920 UTC from Region 4524 (N12, L=224, class/area Cso/100 on 05 Sep), which was also responsible for another M1.2/1n at 04/0753 UTC and 11 C-class flares throughout the period. The M3.0 was accompanied by Type II (estimated velocity 1181 km/s) and IV radio sweeps and a CME first observed in LASCO C2 at ~02/1936 UTC, which modeling indicated would pass behind Earth orbit. The last R1 was an M1.0/1f at 05/1518 UTC from Plage Region 4520 (S12, L=337, class/area Dai/40 on 01 Sep); this region had fully decayed to plage on 03 Sep. An associated CME first became visible in LASCO C2 at ~ 05/1800 and in STEREO coronagraph imagery at ~05/1608 UTC as a halo. Modeling indicated this eruption would pass ahead of Earth orbit. Notably, Plage Region 4518 (N07, L=354, class/area Cri/30 on 26 Aug), which had fully decayed to plage on 03 Sep as well, also produced a C1.3 at 04/1527 UTC. 7 additional CMEs were observed this reporting period. Coronal dimming seen in GOES/SUVI 195 starting ~02/0910 UTC was associated with a CME first seen in STEREO coronagraph imagery at ~02/1108 UTC; modeling indicated that the bulk of the material is likely to pass ahead of Earth orbit but a glancing blow on 07 Sep was possible. A C7.9/Sn at 03/1630 UTC from Region 4524 was accompanied by a Type II radio sweep (estimated velocity 1359 km/s) and a CME first observed in LASCO C2 at ~03/1636 UTC, which modeling indicated would not hit Earth. A C6.7/Sf at 04/1930 UTC from Region 4524 was accompanied by Type II (estimated velocity 698 km/s) and IV radio sweeps and a CME first visible in LASCO C2 at ~04/1924 UTC and STEREO at ~ 04/2030 UTC; modeling indicates this eruption may swallow the 02 Sep eruption and produce a glancing blow at Earth either late 07 Sep or early 08 Sep. A north-south filament just SE of disk-center began erupting at ~05/0530 UTC, and an associated CME was first observed in STEREO coronagraph imagery at ~05/0638 UTC. A C6.4/1n at 05/1045 UTC from Region 4524 was associated with a CME first observed in LASCO C2 at ~ 05/1112 UTC. A C8.5/2n at 05/1746 UTC from Region 4524 was associated with a CME first observed in LASCO C2 at ~05/1800. Modeling indicates that these three CMEs may have a merged arrival at Earth on 08 Sep. Finally, a C5.0/1n at 06/1042 UTC from Region 4524 was associated with a CME first observed in STEREO coronagraph imagery at ~06/1053 UTC, which modeling indicates may produce an arrival at Earth late 08 Sep or early 09 Sep. Proton levels at geosynchronous orbit rapidly enhanced on 05 Sep in response to the M1.0 from Plage Region 4520. The greater than 100 MeV proton flux crossed the 1 pfu threshold at 05/1545 UTC, peaked at 05/1550 UTC at 1.16 pfu, and crossed back below the threshold at 05/1615 UTC. The greater than 10 MeV proton flux crossed the 10 pfu threshold at 05/1615 UTC, peaked at 05/1645 UTC at 18 pfu, and crossed back below the threshold at 05/2135 UTC. The greater than 2 MeV electron flux at geosynchronous orbit was at high levels from 31Aug - 04 Sep and on 06 Sep, returning to normal to moderate levels on 05 Sep. Geomagnetic field activity was at unsettled levels 31 Aug-01 Sep and 05 Sep, and was otherwise at quiet levels.