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相对论性激波和伽马射线暴余辉中的高效电子加热。

Efficient electron heating in relativistic shocks and gamma-ray-burst afterglow.

作者信息

Gedalin M, Balikhin M A, Eichler D

机构信息

Department of Physics, Ben-Gurion University, Beer-Sheva, Israel.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2008 Feb;77(2 Pt 2):026403. doi: 10.1103/PhysRevE.77.026403. Epub 2008 Feb 7.

Abstract

Electrons in shocks are efficiently energized due to the cross-shock potential, which develops because of differential deflection of electrons and ions by the magnetic field in the shock front. The electron energization is necessarily accompanied by scattering and thermalization. The mechanism is efficient in both magnetized and nonmagnetized relativistic electron-ion shocks. It is proposed that the synchrotron emission from the heated electrons in a layer of strongly enhanced magnetic field is responsible for gamma-ray-burst afterglows.

摘要

激波中的电子由于跨激波电势而有效地获得能量,该电势是由激波前沿磁场对电子和离子的不同偏转而产生的。电子的能量增加必然伴随着散射和热化。这种机制在磁化和非磁化的相对论性电子 - 离子激波中都很有效。有人提出,在强增强磁场层中受热电子的同步辐射是伽马射线暴余辉的原因。

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