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Cross-field plasma acceleration and potential formation induced by electrostatic waves in a relativistic magnetized plasma

机译:相对论磁化等离子体中静电波引起的跨场等离子体加速和电势形成

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摘要

Relativistic and non-relativistic particle acceleration along and across a magnetic field, and the generation of an electric field transverse to the magnetic field, both induced by almost perpendicularly propagating electrostatic waves in a relativistic magnetized plasma, are investigated theoretically on the basis of relativistic quasilinear transport equations. The electrostatic waves accelerate particles via Landau or cyclotron damping, and the ratio of parallel and perpendicular drift velocities v(s parallel to)/v(d) can be proved to be proportional to k(parallel to)/k(perpendicular to) Simultaneously, an intense cross-field electric field E-0 = B-0 x v(d)/c is generated via the dynamo effect owing to perpendicular particle drift to satisfy the generalized Ohm's law, which means that this cross-field particle drift is identical to E x B drift. The relativistic quasilinear transport equations for relativistic cross-field particle acceleration are derived by Lorentz transformation of the relativistic quasilinear momentum-space diffusion equation in the moving frame of reference without the electric field and the cross-field particle drift. They can be applied to the investigation of the relativistic perpendicular particle acceleration that may possibly occur in space plasmas. [References: 20]
机译:在相对论拟线性的基础上,理论上研究了沿和穿过磁场的相对论和非相对论质点加速度,以及在垂直相对传播的磁化等离子体中几乎垂直传播的静电波引起的垂直于磁场的电场的产生。运输方程。静电波通过Landau或回旋加速器阻尼使粒子加速,并且平行和垂直漂移速度v(s平行于)/ v(d)的比率可以证明与k(平行于)/ k(垂直于)同时成比例,由于垂直粒子漂移满足通用欧姆定律,因此通过发电机效应产生了一个强电场场E-0 = B-0 xv(d)/ c到E x B漂移。通过相对论准线性动量-空间扩散方程在运动场中的相对论拟线性动量-空间扩散方程的Lorentz变换,推导出相对论跨领域粒子加速度的相对论拟线性传输方程。它们可用于研究可能在空间等离子体中发生的相对论垂直粒子加速度。 [参考:20]

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