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Violation of the transit-time limit toward generation of ultrashort electron bunches with controlled velocity chirp

机译:违反带有受控速度啁啾的超微电子束的转运时间限制

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Various methods to generate ultrashort electron bunches for the ultrafast science evolved from the simple configuration of two-plate vacuum diodes to advanced technologies such as nanotips or photocathodes excited by femtosecond lasers. In a diode either in vacuum or of solid-state, the transit-time limit originating from finite electron mobility has caused spatiotemporal bunch-collapse in ultrafast regime. Here, we show for the first time that abrupt exclusion of transit-phase is a more fundamental origin of the bunch-collapse than the transit-time limit. We found that by significantly extending the cathode-anode gap distance, thereby violating the transit-time limit, the conventional transit-time-related upper frequency barrier in diodes can be removed. Furthermore, we reveal how to control the velocity chirp of bunches leading to ballistic bunch-compression. Demonstration of 0.707 THz-, 46.4 femtosecond-bunches from a 50?μm-wide diode in three-dimensional particle-in-cell simulations shows a way toward simple and compact sources of ultrafast electron bunches for diverse ultrafast sciences.
机译:为超快科学生成超级电子束的各种方法从两板真空二极管的简单配置演变为先进技术,例如由飞秒激光激发的纳米片或光电阴极。在真空或固态的二极管中,源自有限电子迁移率的传输时间限制已经引起超短速制度的时空束塌陷。在这里,我们首次展示突然排除过境阶段是束崩溃的更基本的起源而不是传输时间限制。我们发现,通过显着延伸阴极阳极间隙距离,从而违反过渡时限,可以去除二极管中的传统的传输时间相关的上频屏障。此外,我们揭示了如何控制串的速度啁啾,导致弹道束压缩。在三维粒子内模拟中,从50Ω宽二极管的展示0.707至,46.4的飞秒串,显示出用于多种超快科学的超自递电子束的简单和紧凑的来源。

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