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相对论性电流片中的粒子加速

Particle acceleration in relativistic current sheets.

作者信息

Kirk J G

机构信息

Max-Planck-Institut für Kernphysik, Saupfercheckweg 1, D-69117 Heidelberg, Germany.

出版信息

Phys Rev Lett. 2004 May 7;92(18):181101. doi: 10.1103/PhysRevLett.92.181101. Epub 2004 May 5.

Abstract

Relativistic current sheets have been proposed as the sites of dissipation in pulsar winds, jets in active galaxies, and other Poynting flux dominated flows. It is shown that the steady versions of these structures differ from their nonrelativistic counterparts because they do not permit transformation to a de Hofmann-Teller frame with zero electric field. Instead, their generic form is that of a true neutral sheet with no linking magnetic field component normal to the sheet. The maximum energy to which such structures can accelerate particles is derived, and used to compute the maximum frequency of the subsequent synchrotron radiation. This can be substantially in excess of standard estimates. In the magnetically driven gamma-ray burst scenario, acceleration of electrons is possible to energies sufficient to enable photon-photon pair production after an inverse Compton scattering event.

摘要

相对论性电流片已被提议作为脉冲星风、活动星系中的喷流以及其他以能流为主导的流中的耗散场所。结果表明,这些结构的稳态形式与其非相对论对应物不同,因为它们不允许变换到电场为零的德霍夫曼 - 泰勒坐标系。相反,它们的一般形式是真正的中性片,不存在垂直于该片的连接磁场分量。推导了此类结构能够加速粒子的最大能量,并用于计算后续同步辐射的最大频率。这可能大大超过标准估计值。在磁驱动伽马射线暴的情形中,电子有可能被加速到足够的能量,从而在逆康普顿散射事件之后能够产生光子 - 光子对。

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