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This page provides a prediction of the aurora’s visibility tonight and tomorrow night in the charts below. The animations further down show what the aurora’s been up to over the last 24 hours and estimates what the next 30 minutes will be like.
This product is based on the OVATION model and provides a 30 to 90 minute forecast of the location and intensity of the aurora. The forecast lead time is the time it takes for the solar wind to travel from the L1 observation point to Earth.
Forecast: Active aurora activity forecasted. If skies are clear, active auroral displays may be visible overhead from Utqiaġvik to Anchorage and Juneau, and may be visible low on the horizon from King Salmon and Ketchikan. Moon phase: Last Quarter.
Tomorrow Night's Aurora Viewline. This is a prediction of the intensity and location of the aurora borealis tonight and tomorrow night over North America. It also shows a 'viewline' that represents the southern-most locations from which you may see the aurora on the northern horizon.
Get real-time aurora borealis forecasts for Northern skies. Stay updated on the best times to see the northern lights with accurate aurora activity predictions.
Below you'll find the daily maximum expected global geomagnetic conditions (Kp) for the coming 27 days. This is the fastest way to quickly find out what kind of geomagnetic conditions are to be expected over the next 27 days. These predictions are updated weekly by the NOAA SWPC.
Aurora Borealis season in northern polar latitudes (Alaska, northern Canada, Greenland, Iceland, Norway, Sweden, Finland and Siberia) runs from August-thru-April. These are the nights with darkness in them.
SpaceWeatherLive.com is a near live website where you can follow space weather from the Sun to Earth and know exactly when you can see aurora. More info...
01%. Future Kp Index Forecast by hour (UTC) 00-03. 03-06. 06-09. 09-12. 12-15. 15-18. 18-21.
The OVATION Aurora Forecast Model shows the intensity and location of the aurora predicted for the time shown at the top of the map. This probability forecast is based on current solar wind conditions measured at L1, but using a fixed 30-minute delay time between L1 and Earth.