Aurora at your location · NOAA OVATION · MET Norway · the atlas under your feet

Northern lights tonight: will you see them from where you are?

The answer is computed for your pin, not for your country: NOAA's aurora oval where it actually is, how high it stands over your northern horizon, the hours tonight that are dark enough, the cloud over those hours, the Moon, and how dark the ground is where you stand. Set a pin to replace the example.

Tromsø, Norway · Times in Europe/Oslo

The oval now, from the pole to 40°. Dashed line: how far south tonight's forecast Kp reaches. Your meridian points down.

Reading NOAA…

Tromsø, Norway

rows: dark · oval · clear · no Moon — the window is the run of green hours

Reading NOAA…

Kp now, next hour, and the three nights ahead

What Kp is, and what it cannot tell you → · Is there a geomagnetic storm today? →

Camera settings for this aurora

From the oval's brightness right now (NOAA's hemispheric power) and the exposure law — not a generic table.

Going out for hours? Plan the sequence · when you are back, drop the folder into the stacker — it keeps every frame's aurora and removes the satellites. The full photography guide →

The oval, over you and on your horizon

NOAA's OVATION model gives the chance of aurora overhead in each one-degree cell. Aurora sits about 110 km up, so a bright arc 600 km toward the pole still stands 7° above your horizon. This page walks from your pin toward the magnetic pole and reports the best cell it finds, with its elevation — which is why a city that reads 0 % overhead can still be told to look north.

Kp, and the Kp you need

Kp (0–9) is the planetary geomagnetic index. The oval's edge reaches about 66° magnetic latitude at Kp 0 and 48° at Kp 9. Your magnetic latitude is what matters, and it differs from the map's: Michigan at 46° N is as magnetically north as Ireland at 53° N. The threshold shown is the Kp at which the oval is overhead, from NOAA's table and the 2025 dipole; a centred dipole is a couple of degrees off in places, which is a full Kp step, so read it as ±1. The horizon needs about four Kp less.

Dark enough

Aurora is faint. Civil twilight (Sun above −6°) hides all but a storm; nautical and astronomical twilight count for a quarter to three quarters; full night, the Sun at −18° or below, counts for all of it. The hour strip's first row is that ramp, in your pin's own time zone — printed, never assumed.

Cloud, by layer

Low and medium cloud is a wall; a thin high veil dims. The forecast is MET Norway's, hourly for two days then six-hourly, and the card names the hour it read. No forecast means the verdict assumes clear and says so.

The Moon is a discount, not a veto

A full Moon high in the sky washes out faint aurora and does nothing to a G3 curtain — the October 2024 G4 storm was photographed across Europe and North America under a first-quarter Moon. The Moon factor bottoms at half, never zero.

Ground darkness

The last number is the sky brightness of the ground you stand on, from this site's light pollution map (2 979 measured SQM readings behind its calibration). A 5° arc is invisible from a city park and obvious from a dark field 40 km north — the map finds that field.

Solar wind: the next hour

The oval brightens when the solar wind's magnetic field points south (Bz negative) and blows fast. NOAA propagates the L1 measurement to Earth; that is 30–60 minutes of warning before Kp catches up.

Four horizons, honestly

The grid speaks for the next 90 minutes; the geospace model for the next hour; the forecaster's 3-day Kp for tonight and two more; the 27-day outlook for a trip. Each hour on the strip says which one it used.

Northern lights tonight by place

The same verdict pinned to real observing sites, with each site's ground darkness read from the atlas.

Northern lights questions

Can I see the northern lights tonight?

It depends on four things at your location: whether the aurora oval reaches your horizon (NOAA's OVATION grid now, the Kp forecast for later), whether it is dark enough (the Sun below −6°, fully dark below −18°), whether low cloud covers the dark hours, and how much Moon is up. The card on this page computes all four for your pin and gives the hours they line up.

What Kp do I need to see the aurora?

It is set by your magnetic latitude, not your map latitude. Roughly: Kp 0–2 under the oval (Tromsø, Fairbanks, Yellowknife), Kp 3–4 in Scotland and the Canadian prairies, Kp 5 (a G1 storm) for Michigan's north and Denmark, Kp 6–7 for London, Berlin, New York and Chicago, Kp 8–9 for Paris, Warsaw and Colorado. Those are the levels at which the oval is overhead; on the horizon it shows from three to four Kp less. The Kp index page marks your row.

Why does the page say 0 % overhead but still tell me to look north?

OVATION's number is the chance of aurora directly overhead in your one-degree cell. Aurora sits about 110 km up, so a bright arc 600 km toward the pole still stands about 7° above your horizon. The page walks toward the magnetic pole and reports the best cell it finds, with its elevation and bearing.

Does the Moon ruin the northern lights?

It dims faint aurora and does little to a strong display: the 10–11 October 2024 G4 storm was photographed under a first-quarter Moon. The verdict treats the Moon as a discount that bottoms at half, never as a veto.

Where does the cloud forecast come from?

MET Norway's Locationforecast (CC BY 4.0), hourly for two days and six-hourly after, read by your browser for your pin rounded to two decimals. Low and medium cloud are treated as a wall; a high veil as a dimmer.

Is anything about my location uploaded?

The pin is kept in your address bar and your browser's local storage. It is sent, rounded, to MET Norway to fetch the cloud forecast, and nowhere else. There is no account and no server of ours in the loop.

Sources and privacy

Aurora grid, Kp, solar wind, hemispheric power, scales and alerts: NOAA Space Weather Prediction Center, read live by your browser (public domain). Cloud and temperature: MET Norway Locationforecast (CC BY 4.0), which receives your pin rounded to two decimals — the only place it goes. Ground darkness: this site's light pollution atlas. Times are shown in the pin's own zone from an offline table. The pin stays in your browser (the address bar and local storage); there is no account and nothing is uploaded. Alerts by e-mail are being built.