Hubble observations reveal a giant, turbulent planet-forming disk that may reshape theories of how planetary systems develop.
Close-up observations of the Sun explain how solar flares start, grow, and send high-energy particles racing through space.
The universe is full of spectacular sights, from aurora on Earth and Jupiter to the solar flares that cause them, to distant ...
A newly active area on the sun is responsible for dozens of eruptions known as solar flares, including back-to-back X-class ...
NASA's Solar Dynamics Observatory captured a magnetic filament erupting on the Sun. The filament was "connected to sunspot ...
Typically, intense geomagnetic storms stem from massive CMEs, expulsions of plasma and magnetic fields from the Sun's corona.
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During a close approach to the Sun, the European Space Agency’s Solar Orbiter watched that tipping point unfold in unusually ...
NASA's Solar Dynamics Observatory captured a huge filament eruption in multiple wavelengths. Credit: Space.com | footage ...
Scientists watched a solar flare grow from tiny magnetic sparks into a violent plasma-raining avalanche on the Sun.
Solar Orbiter observations show that a medium-class solar flare formed through cascading magnetic reconnection events, ...
Some solar flares can result in coronal mass ejections (CMEs) – huge plumes of plasma blown off the sun's corona and into ...