While there have been significant advances in our understanding of impulsive energy release at the Sun through the combination of RHESSI X-ray observations and SDO/AIA EUV observations, there is a clear science need for significantly improved X-ray and EUV observations. These new observations must capture the full range of emission in flares and CMEs (e.g., faint coronal sources near bright chromospheric sources), connect the intricate evolution of energy release with dynamic changes in the configuration of plasma structures, and identify the signatures of impulsive energy release in even the quiescent Sun. The Fundamentals of Impulsive Energy Release in the Corona Explorer (FIERCE) MIDEX mission concept makes these observations by combinin...
Solar flares are observed at all wavelengths from decameter radio waves to gamma-rays beyond 1 GeV. ...
This thesis strives to improve our understanding of solar activity, specifically the behaviour of so...
Solar flares are the most vigorous explosive phenomena in our solar system. They release up to $\sim...
Impulsive particle acceleration and plasma heating at the Sun, from the largest solar eruptive event...
Impulsive particle acceleration and plasma heating at the Sun, from the largest solar eruptive event...
<p>Impulsive particle acceleration and plasma heating at the Sun, from the largest solar eruptive ev...
The Focusing Optics X-ray Solar Imager (FOXSI) is, in its initial form, a sounding rocket experiment...
Solar flares are huge explosions on the Sun that release a tremendous amount of energy from the coro...
We present the FOXSI (Focusing Optics X-ray Solar Imager) small explorer (SMEX) concept, a mission d...
Context. Remote observations of solar flare ion acceleration are rather limited. Theoretical predict...
Context. Remote observations of solar flare ion acceleration are rather limited. Theoretical predict...
The solar corona is an extremely hot, dynamic region of the solar atmosphere. Hard X-ray (HXR) obser...
Large, powerful solar flares have been investigated in detail for decades, but it is only recently t...
It is essential that there be coordinated and co-optimized observations in X-rays, gamma-rays, and E...
A solar flare is composed of impulsive energy release events by magnetic reconnection, which forms a...
Solar flares are observed at all wavelengths from decameter radio waves to gamma-rays beyond 1 GeV. ...
This thesis strives to improve our understanding of solar activity, specifically the behaviour of so...
Solar flares are the most vigorous explosive phenomena in our solar system. They release up to $\sim...
Impulsive particle acceleration and plasma heating at the Sun, from the largest solar eruptive event...
Impulsive particle acceleration and plasma heating at the Sun, from the largest solar eruptive event...
<p>Impulsive particle acceleration and plasma heating at the Sun, from the largest solar eruptive ev...
The Focusing Optics X-ray Solar Imager (FOXSI) is, in its initial form, a sounding rocket experiment...
Solar flares are huge explosions on the Sun that release a tremendous amount of energy from the coro...
We present the FOXSI (Focusing Optics X-ray Solar Imager) small explorer (SMEX) concept, a mission d...
Context. Remote observations of solar flare ion acceleration are rather limited. Theoretical predict...
Context. Remote observations of solar flare ion acceleration are rather limited. Theoretical predict...
The solar corona is an extremely hot, dynamic region of the solar atmosphere. Hard X-ray (HXR) obser...
Large, powerful solar flares have been investigated in detail for decades, but it is only recently t...
It is essential that there be coordinated and co-optimized observations in X-rays, gamma-rays, and E...
A solar flare is composed of impulsive energy release events by magnetic reconnection, which forms a...
Solar flares are observed at all wavelengths from decameter radio waves to gamma-rays beyond 1 GeV. ...
This thesis strives to improve our understanding of solar activity, specifically the behaviour of so...
Solar flares are the most vigorous explosive phenomena in our solar system. They release up to $\sim...