Storms of 1978

G3 (Strong) Geomagnetic Storm of June 2, 1978

June 2 to 3, 1978 · 21 hours

A G3 (strong) geomagnetic storm began June 2, 1978, reached Kp 7+ and lasted 21 hours, with a daily Ap as high as 82; at that Kp the aurora may be seen from about 48 degrees geomagnetic latitude.

The Kp through the storm

Began Jun 2, 09:00 UTC, peaked in the block from Jun 2, 12:00 UTC, ended Jun 3, 06:00 UTC.

From 00 UT the day before to the end of the day after. Blocks in the storm are colored by level; the rest are gray.

The storm

Peak Kp
7+ (7.33)
NOAA level
G3 Strong
Duration
21 hours
Highest daily Ap
82
Highest 3-hour ap
154
Rank since 1932
325 of 4,139

How far south the aurora could have been seen

At Kp 7+ NOAA’s scales put the aurora’s reach at about 48 degrees geomagnetic latitude: 40°N in the central US, 39°N in the eastern US, 43°N in the western US and 49°N in northern Europe.

NOAA says a G3 storm’s aurora has been seen as low as Illinois and Oregon.

US cities within reach, the southernmost first

  • Baltimore, MD 48.5° geomag.
  • Indianapolis, IN 48.7° geomag.
  • Columbus, OH 49.0° geomag.
  • Lincoln, NE 49.1° geomag.
  • Philadelphia, PA 49.1° geomag.
  • Eugene, OR 49.4° geomag.
  • Pittsburgh, PA 49.6° geomag.
  • Omaha, NE 49.6° geomag.
  • Staten Island, NY 49.8° geomag.
  • Brooklyn, NY 49.8° geomag.

53 US cities of 150,000 people or more sit at or poleward of that line. Low on the northern horizon under a dark, clear sky; not a record of sightings.

Tonight’s aurora forecast

Day by day

The daily Ap is the mean of the day’s eight three-hour ap values.

UT dayDaily ApHighest Kp that day
June 2, 1978827+
June 3, 1978316

Flares before it

Peak (UTC)ClassRegionBefore the storm began
May 30, 07:21 UTCM0.6NOAA 112974 hours
May 31, 11:25 UTCM0.6NOAA 112946 hours
May 30, 19:26 UTCM0.4NOAA 112962 hours
May 30, 15:28 UTCM0.1NOAA 112966 hours
Jun 1, 21:13 UTCM0.1NOAA 113112 hours

The strongest M and X class flares GOES recorded from four days before the storm began to its end, the window in which a coronal mass ejection launched with a flare usually arrives. A flare in this list is context, not proof of the cause: many storms come from coronal holes, and many flares launch nothing toward Earth.

More

The storm before, May 30The storm after, Jun 4Every storm of 1978The strongest on recordThis day in weather historyTonight’s aurora forecast

Sources

Kp and ap from GFZ Helmholtz Centre for Geosciences, Geomagnetic Observatory Niemegk, licensed CC BY 4.0: Matzka, J., Stolle, C., Yamazaki, Y., Bronkalla, O. and Morschhauser, A., 2021, The geomagnetic Kp index and derived indices of geomagnetic activity, Space Weather, doi:10.1029/2020SW002641; data doi:10.5880/Kp.0001. Storms, levels and aurora reach worked out by WeatherOverTime from those values and NOAA’s space weather scales. Definitive through August 31, 2026; later values are preliminary. Rebuilt 2026-09-25. Flares from NOAA NCEI’s GOES X-ray flare reports (1975 to 2017) and SWPC’s edited solar event lists, public domain; classes as NOAA recorded them at the time.