High-Energy Aspects of Solar Flares: Overview of the Volume
arXiv:1109.5831 · doi:10.1007/s11214-011-9802-z
Abstract
In this introductory chapter, we provide a brief summary of the successes and remaining challenges in understanding the solar flare phenomenon and its attendant implications for particle acceleration mechanisms in astrophysical plasmas. We also provide a brief overview of the contents of the other chapters in this volume, with particular reference to the well-observed flare of 2002 July 23
This is the introductory article for a monograph on the physics of solar flares, inspired by RHESSI observations. The individual articles are to appear in Space Science Reviews (2011)
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Cited by in corpus (10)
- Implications for electron acceleration and transport from non-thermal electron rates at looptop and footpoint sources in solar flares
- Turbulent pitch-angle scattering and diffusive transport of hard-X-ray producing electrons in flaring coronal loops
- How Electron Two-Stream Instability Drives Cyclic Langmuir Collapse and Continuous Coherent Emission
- How Anomalous Resistivity Accelerates Magnetic Reconnection
- Anomalous Cooling of Coronal Loops with Turbulent Suppression of Thermal Conduction
- Electron Two-stream Instability and Its Application in Solar and Heliophysics
- NuSTAR Observation of Energy Release in Eleven Solar Microflares
- A Brief Review on Particle Acceleration in Multi-island Magnetic Reconnection
- Ramaty High Energy Solar Spectroscopic Imager (RHESSI)
- First Detailed MeerKAT Imaging Spectroscopy of a Solar Flare