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Excitation Of Wakefields In A Relativistically Hot Plasma Created By Dying Non-linear Plasma Wakefields

机译:通过染色非线性等离子体苏醒场创造的相对论热等离子体中的Wakefields的激发

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We study the various physical processes and their timescales involved in the excitation of wakefields in relativistically hot plasma. This has relevance to the design of a high repetition-rate plasma wakefield collider in which the plasma has not had time to cool between bunches in addition to understanding the physics of cosmic jets in relativistically hot astrophysical plasmas. When the plasma is relativistically hot (plasma temperature near m_ec~2), the thermal pressure competes with the restoring force of ion space charge and can reduce or even eliminate the accelerating field of a wake. We will investigate explicitly the case where the hot plasma is created by a preceding Wakefield drive bunch 10's of picoseconds to many nanoseconds ahead of the next drive bunch. The relativistically hot plasma is created when the excess energy (not coupled to the driven e~- bunch) in the wake driven by the drive e~- bunch is eventually converted into thermal energy on 10's of picosecond timescale. We will investigate the thermalization and diffusion processes of this non-equilibrium plasma on longer time scales, including the effects of ambi-polar diffusion of ions driven by hot electron expansion, possible Columbic explosion of ions producing higher ionization states and ionization of surrounding neutral atoms via collisions with hot electrons. Preliminary results of the transverse and longitudinal wakefields at different timescales of separation between a first and second bunch are presented and a possible experiment to study this topic at the FACET facility is described.
机译:我们研究了各种物理过程及其时间谱,参与了相对激烈的炎热等离子体中的唤醒赛的激励。这与高重复速率等离子体唤醒撞机的设计有关,其中除了在相对激烈的炎热天体物理等离子体中理解宇宙喷射物理学之外,等离子体还没有时间在束之间冷却。当等离子体相对激烈(等离子体温度靠近M_EC〜2)时,热压与离子空间电荷的恢复力竞争,并且可以减少甚至消除唤醒的加速场。我们将明确调查热等离子体由前面的Wakefield驱动束10的PICOSECONDS在下次驱动束之前的许多纳秒内创建的情况。当通过驱动E〜 - 束驱动的唤醒驱动的唤醒中的多余能量(未耦合到驱动的E〜 - 束)最终将在PicoSecond Timescale的10中转换为热能时,产生相对的热等离子体。我们将在更长的时间尺度上探讨该非平衡等离子体的热化和扩散过程,包括热电子膨胀驱动的离子扩散的效果,可能产生更高的离子化状态和周围中性原子的电离的离子爆炸通过与热电子的碰撞。呈现了第一和第二束之间的不同时间尺度的横向和纵向唤醒的初步结果,并描述了在方面设施处研究该主题的可能实验。

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