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Fluid simulation of relativistic electron beam driven wakefield in a cold plasma

机译:相对论电子束驱动的尾流在冷等离子体中的流体模拟

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Excitation of wakefield in a cold homogeneous plasma, driven by an ultra- relativistic electron beam is studied in one dimension using fluid simulation techniques. For a homogeneous rigid beam having density (n(b)) less than or equal to half the plasma density (n(0)), simulation results are found to be in good agreement with the analytical work of Rosenzweig [Phys. Rev. Lett. 58, 555 (1987)]. Here, Rosenzweig's work has been analytically extended to regimes where the ratio of beam density to plasma density is greater than half and results have been verified using simulation. Further in contrast to Rosenzweig's work, if the beam is allowed to evolve in a self-consistent manner, several interesting features are observed in simulation viz. splitting of the beam into beam-lets (for l(b)> lambda(p)) and compression of the beam (for l(b)< lambda(p)), l(b) and lambda(p), respectively, being the initial beam length and plasma wavelength. (C) 2015 AIP Publishing LLC.
机译:使用流体模拟技术,在一维中研究了由超相对论电子束驱动的冷均质等离子体中的尾场激发。对于密度(n(b))小于或等于等离子体密度(n(0))一半的均质刚性梁,仿真结果与Rosenzweig的分析工作非常吻合。牧师58,555(1987)]。在这里,Rosenzweig的工作已被分析地扩展到束密度与等离子体密度之比大于一半的方案,并已通过仿真验证了结果。与Rosenzweig的工作形成鲜明对比的是,如果允许光束以自洽的方式扩展,则在仿真中会观察到一些有趣的特征。将光束分为小束(对于l(b)> lambda(p))和压缩光束(分别对于l(b)

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