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The behavior of beams of relativistic non-thermal electrons under the influence of collisions and synchrotron losses

机译:相对论性非热电子束在碰撞和同步加速器损耗的影响下的行为

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摘要

For many astrophysical situations, such as in solar flares or cosmic gamma-ray bursts, continuum gamma rays with energies up to hundreds of MeV were observed, and can be interpreted to be due to bremsstrahlung radiation by relativistic electrons. The region of acceleration for these particles is not necessarily the same as the region in which the radiation is produced, and the effects of the transport of the electrons must be included in the general problem. Hence it is necessary to solve the kinetic equation for relativistic electrons, including all the interactions and loss mechanisms relevant at such energies. The resulting kinetic equation for non-thermal electrons, including the effects of Coulomb collisions and losses due to synchrotron emission, was solved analytically in some simple limiting cases, and numerically for the general cases including constant and varying background plasma density and magnetic field. New approximate analytic solutions are presented for collision dominated cases, for small pitch angles and all energies, synchrotron dominated cases, both steady-state and time dependent, for all pitch angles and energies, and for cases when both synchrotron and collisional energy losses are important, but for relativistic electrons. These analytic solutions are compared to the full numerical results in the proper limits. These results will be useful for calculation of spectra and angular distribution of the radiation (x rays, gamma-rays, and microwaves) emitted via synchrotron or bremsstrahlung processes by the electrons. These properties and their relevance to observations will be observed in subsequent papers.
机译:对于许多天体物理情况,例如在太阳耀斑或宇宙伽马射线爆发中,观察到能量高达数百MeV的连续伽马射线,可以解释为是由于相对论电子electron致辐射。这些粒子的加速区域不必与产生辐射的区域相同,并且电子传输的影响必须包含在一般问题中。因此,有必要解决相对论电子的动力学方程,包括与这种能量有关的所有相互作用和损耗机理。非热电子的动力学方程,包括库仑碰撞和由于同步加速器发射引起的损耗的影响,在一些简单的极限情况下得到了解析,在包括恒定和变化的背景等离子体密度和磁场在内的一般情况下,得到了数值求解。针对碰撞主导的情况,小俯仰角和所有能量,同步加速器主导的情况(取决于状态和时间),所有俯仰角和能量以及对于同步加速器和碰撞能量损耗都很重要的情况,提出了新的近似解析解。 ,但适用于相对论电子。将这些解析解与适当限制下的完整数值结果进行比较。这些结果对于计算电子通过同步加速器或致辐射过程发射的辐射(X射线,γ射线和微波)的光谱和角度分布非常有用。这些属性及其与观察的相关性将在后续论文中进行观察。

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