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How Coronal Mass Ejections Work

A coronal mass ejection (CME) is the largest kind of solar eruption. When a tangled magnetic loop in the Sun's corona snaps and reconnects, it launches a bubble of magnetized plasma weighing up to a billion tons into space at hundreds to thousands of km/s.

The Journey to Earth

A typical CME takes 1โ€“3 days to reach Earth. The fastest observed CMEs, like the July 2012 event, cross the distance in under 20 hours. Slower CMEs can take 4โ€“5 days. The Drag-Based Model uses ambient solar wind speed to predict transit time and impact.

What Happens on Arrival

The CME's leading shock compresses Earth's magnetosphere, causing a sudden sharp jump in ground magnetometers called an SSC (storm sudden commencement). If the CME's internal magnetic field is southward, sustained reconnection drives a geomagnetic storm and aurora for many hours.

Halo CMEs

When a CME is launched directly toward Earth, coronagraph images show it as an expanding ring around the Sun โ€” a 'halo CME'. These are the events forecasters watch most carefully because they'll hit head-on rather than glance past.

Frequently Asked Questions

Do all CMEs cause storms?

No. Only Earth-directed CMEs with a southward internal magnetic field produce significant storms. Glancing blows and northward-field CMEs often pass with little effect.

How is a CME different from a flare?

A flare is a burst of light; a CME is a physical cloud of matter. They often occur together but not always.

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