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Physical properties of relativistic electron beam during long-range propagation in space plasma environment
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作者 Bi-Xi Xue Jian-Hong Hao +3 位作者 Qiang Zhao Fang Zhang Jie-Qing Fan Zhi-Wei Dong 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第10期283-291,共9页
It is known that ion channel can effectively limit the radial expansion of an artificial electron beam during its longrange propagation in the space plasma environment.Most prior studies discussed the focusing charact... It is known that ion channel can effectively limit the radial expansion of an artificial electron beam during its longrange propagation in the space plasma environment.Most prior studies discussed the focusing characteristics of the beam in the ion channel,but the establishment process and transient properties of the ion channel itself,which also plays a crucial role during the propagation of the relativistic electron beam in the plasma environment,were commonly neglected.In this study,a series of two-dimensional(2D)particle-in-cell simulations is performed and an analytical model of ion channel oscillation is constructed according to the single-particle motion.The results showed that when the beam density is higher than the density of plasma environment,ion channel can be established and always continues to oscillate periodically over the entire propagation.Multiple factors,including the beam electron density,initial beam radius,and the plasma density can affect the oscillation properties of ion channel.Axial velocity of the beam oscillates synchronously with the ion channel and this phenomenon will finally develop into a two-stream instability which can seriously affect the effective transport for relativistic electron beam.Choosing appropriate beam parameters based on various plasma environments may contribute to the improvement of the stability of ion channel.Additionally,radial expansion of the beam can be limited by ion channel and a stable long-range propagation in terrestrial atmosphere may be achieved. 展开更多
关键词 ion channel space plasma environment long-range propagation particle-in-cell(PIC)simulation
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航天飞行器与空间等离子体环境的相互作用 被引量:8
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作者 王柏懿 徐燕侯 吴清松 《宇航学报》 EI CAS CSCD 北大核心 1990年第3期10-15,共6页
本文阐述了航天飞行器与空间等离子体环境相互作用研究的背景和意义,评论了这一研究的历史与现状,并着重介绍了空间环境对航天飞行器作用的三种不同类型(辐射、充电、耦合电流)及其机制。
关键词 航天器 等离子体 空间环境 效应
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大型临近空间等离子体真空环境模拟技术研究 被引量:2
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作者 付春雨 董怡泽 《计算机测量与控制》 2019年第6期236-240,共5页
航天器在轨运行时会因与空间等离子体之间的相互作用而影响其在轨运行的可靠性,进而影响航天器各项性能;通过传统空间飞行的方法进行研究分析,其代价巨大且不易实现,而采用地面真空环境模拟系统来进行模拟试验具有不可替代的优势以及重... 航天器在轨运行时会因与空间等离子体之间的相互作用而影响其在轨运行的可靠性,进而影响航天器各项性能;通过传统空间飞行的方法进行研究分析,其代价巨大且不易实现,而采用地面真空环境模拟系统来进行模拟试验具有不可替代的优势以及重要意义;通过对组成等离子体环境模拟系统的真空容器、真空获得以及测控等3个子系统进行结构设计、仿真分析和数值计算等研究分析,结果表明:当真空容器的最大应力为113.2 MPa,最大变形为0.59 mm时,容器的结构稳定性可以满足模拟试验的要求;真空获得系统的抽气时间可满足试验需求;测控系统的结构设计以及人机交互性能满足试验过程中的使用需求。 展开更多
关键词 空间等离子体 真空环境 环境模拟
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