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Heat flux effects on magnetic field dynamics in solid density plasmas traversed by relativistic electron beams.

机译:热通量对相对论电子束穿过的固体密度等离子体中磁场动力学的影响。

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摘要

Relativistic electron beam propagation through solid density plasma is a rich area for magnetic field dynamics. It is well known that Ohmic heating of the background plasma caused by the beam significantly affects magnetic field generation, primarily through changes in the resistivity. In particular, temperature changes in the background plasma leads to the generation of a magnetic field that acts to deflect relativistic electrons from the beam axis. This 'beam hollowing' field could have disastrous implications for the fast ignitor scheme.ududIn this paper, the effects of background heat flow on magnetic field generation are considered, first with a simple analytic investigation, and then with 1D Vlasov Fokker–Planck and classical transport simulations using a rigid beam for the fast electrons. It is shown that the thermal conduction of the background plasma acts to diffuse the temperature, reducing both the temperature gradients and the beam hollowing field. This gives rise to the re-emergence of a collimating magnetic field. The influence of the background heat flux is also investigated in the context of solids with imposed resistivity gradients, and is shown to significantly enhance the magnetic field present. More exotic transport effects, such as an enhanced Nernst velocity (due to non-local heat flux) and double peaked temperature profiles (due to distortion of the heating and heat-flow profiles by the magnetic field), are also reported.
机译:相对论电子束通过固体密度等离子体的传播是磁场动力学的一个丰富领域。众所周知,由束引起的背景等离子体的欧姆加热主要通过电阻率的变化显着影响磁场的产生。特别地,背景等离子体中的温度变化导致产生磁场,该磁场用于使相对论电子从束轴偏转。 ud ud本文考虑了背景热流对磁场产生的影响,首先是通过简单的分析研究,然后是一维Vlasov Fokker,它是“光束空心”场对快速点火器方案的灾难性影响。使用快速电子的刚性束进行的普朗克和经典输运模拟。结果表明,背景等离子体的热传导起到扩散温度的作用,从而减小了温度梯度和射束空心场。这引起准直磁场的重新出现。在具有电阻率梯度的固体环境中,还研究了背景热通量的影响,并且显示出该热能会显着增强存在的磁场。还报告了更奇特的传输效应,例如提高的能斯特速度(由于非局部热通量)和双峰温度曲线(由于磁场导致的加热和热流曲线失真)。

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