It is essential that there be coordinated and co-optimized observations in X-rays, gamma-rays, and EUV during the peak of solar cycle 26 (~2036) to significantly advance our understanding of impulsive energy release in the corona. The open questions include: What are the physical origins of space-weather events? How are particles accelerated at the Sun? How is impulsively released energy transported throughout the solar atmosphere? How is the solar corona heated? Many of the processes involved in triggering, driving, and sustaining solar eruptive events -- including magnetic reconnection, particle acceleration, plasma heating, and energy transport in magnetized plasmas -- also play important roles in phenomena throughout the Universe. This ...
The underlying origin of solar eruptive events (SEEs), ranging from giant coronal mass ejections to ...
Solar flares are the product of a rapid release of energy due to magnetic reconnection, which result...
Solar energetic particle (SEP) events are related to both solar flares and coronal mass ejections (C...
Solar flares and coronal mass ejections are interrelated phenomena that together are known as solar ...
The coronal magnetic field is the prime driver behind many as-yet unsolved mysteries: solar eruption...
Our current theoretical and observational understanding suggests that critical properties of the sol...
The Sun's proximity offers us a unique opportunity to study in detail the physical processes on a st...
The exploration of the inner heliosphere by Parker Solar Probe has revealed a highly structured sola...
The defining physical property of the Sun's corona is that the magnetic field dominates the plasma. ...
Context. On 2020 November 29, an eruptive event occurred in an active region located behind the east...
Data is compiled from Solar Maximum Mission and Hinothori satellites, particle detectors in several ...
Context. On 2020 November 29, an eruptive event occurred in an active region located behind the east...
Context. On 2020 November 29, an eruptive event occurred in an active region located behind the east...
The sudden release of magnetic energy on the Sun drives powerful solar flares and coronal mass eject...
During solar minimum, the Sun is relatively inactive with few sunspots observed on the solar surface...
The underlying origin of solar eruptive events (SEEs), ranging from giant coronal mass ejections to ...
Solar flares are the product of a rapid release of energy due to magnetic reconnection, which result...
Solar energetic particle (SEP) events are related to both solar flares and coronal mass ejections (C...
Solar flares and coronal mass ejections are interrelated phenomena that together are known as solar ...
The coronal magnetic field is the prime driver behind many as-yet unsolved mysteries: solar eruption...
Our current theoretical and observational understanding suggests that critical properties of the sol...
The Sun's proximity offers us a unique opportunity to study in detail the physical processes on a st...
The exploration of the inner heliosphere by Parker Solar Probe has revealed a highly structured sola...
The defining physical property of the Sun's corona is that the magnetic field dominates the plasma. ...
Context. On 2020 November 29, an eruptive event occurred in an active region located behind the east...
Data is compiled from Solar Maximum Mission and Hinothori satellites, particle detectors in several ...
Context. On 2020 November 29, an eruptive event occurred in an active region located behind the east...
Context. On 2020 November 29, an eruptive event occurred in an active region located behind the east...
The sudden release of magnetic energy on the Sun drives powerful solar flares and coronal mass eject...
During solar minimum, the Sun is relatively inactive with few sunspots observed on the solar surface...
The underlying origin of solar eruptive events (SEEs), ranging from giant coronal mass ejections to ...
Solar flares are the product of a rapid release of energy due to magnetic reconnection, which result...
Solar energetic particle (SEP) events are related to both solar flares and coronal mass ejections (C...