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首页> 外文期刊>Physics of plasmas >Electron self-injection into an evolving plasma bubble: Quasi-monoenergetic laser-plasma acceleration in the blowout regime
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Electron self-injection into an evolving plasma bubble: Quasi-monoenergetic laser-plasma acceleration in the blowout regime

机译:电子自我注入到正在演化的等离子气泡中:井喷状态下的准单能激光等离子体加速

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摘要

An electron density bubble driven in a rarefied uniform plasma by a slowly evolving laser pulse goes through periods of adiabatically slow expansions and contractions. Bubble expansion causes robust self-injection of initially quiescent plasma electrons, whereas stabilization and contraction terminate self-injection thus limiting injected charge; concomitant phase space rotation reduces the bunch energy spread. In regimes relevant to experiments with hundred terawatt- to petawatt-class lasers, bubble dynamics and, hence, the self-injection process are governed primarily by the driver evolution. Collective transverse fields of the trapped electron bunch reduce the accelerating gradient and slow down phase space rotation. Bubble expansion followed by stabilization and contraction suppresses the low-energy background and creates a collimated quasi-monoenergetic electron bunch long before dephasing. Nonlinear evolution of the laser pulse (spot size oscillations, self-compression, and front steepening) can also cause continuous self-injection, resulting in a large dark current, degrading the electron beam quality.
机译:在缓慢均匀的激光脉冲作用下,在稀疏的均匀等离子体中驱动的电子密度气泡经过绝热缓慢的膨胀和收缩。气泡膨胀会引起初始静态等离子体电子的强大自注入,而稳定和收缩则终止自注入,从而限制了注入的电荷。相空间旋转伴随着束能量的减少。在与数百兆瓦至PB级别的激光器进行实验相关的方案中,气泡动力学以及因此的自注入过程主要取决于驱动程序的演变。被束缚的电子束的集体横向场减小了加速梯度并减慢了相空间旋转。气泡膨胀,然后稳定和收缩,抑制了低能量本底,并在移相之前很久就形成了准直的准单能电子束。激光脉冲的非线性演变(光斑尺寸振荡,自压缩和前部变陡)也可能导致连续自注入,从而导致较大的暗电流,从而降低了电子束的质量。

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