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在磁扭摆器中电子束的相稳自调制。

Phase-Stable Self-Modulation of an Electron Beam in a Magnetic Wiggler.

机构信息

SLAC National Accelerator Laboratory, Menlo Park, California 94025, USA.

Stanford University, Stanford, California 94305, USA.

出版信息

Phys Rev Lett. 2019 Nov 22;123(21):214801. doi: 10.1103/PhysRevLett.123.214801.

Abstract

Electron beams with a sinusoidal energy modulation have the potential to emit subfemtosecond x-ray pulses in a free-electron laser. An energy modulation can be generated by overlapping a powerful infrared laser with an electron beam in a magnetic wiggler. We report on a new infrared source for this modulation, coherent radiation from the electron beam itself. In this self-modulation process, the current spike on the tail of the electron beam radiates coherently at the resonant wavelength of the wiggler, producing a six-period carrier-envelope-phase (CEP)-stable infrared field with gigawatt power. This field creates a few MeV, phase-stable modulation in the electron-beam core. The modulated electron beam is immediately useful for generating subfemtosecond x-ray pulses at any machine repetition rate, and the CEP-stable infrared field may find application as an experimental pump or timing diagnostic.

摘要

电子束的正弦能量调制有可能在自由电子激光中发射亚飞秒级的 X 射线脉冲。通过在磁扭摆器中将强红外激光与电子束重叠,可以产生能量调制。我们报告了这种调制的一种新的红外源,即电子束本身的相干辐射。在这个自调制过程中,电子束尾部的电流尖峰在扭摆器的共振波长处相干辐射,产生一个具有千兆瓦功率的六周期载波包络相位(CEP)稳定的红外场。这个场在电子束核心中产生了几兆电子伏特、相位稳定的调制。调制后的电子束立即可用于在任何机器重复率下产生亚飞秒级的 X 射线脉冲,而 CEP 稳定的红外场可能作为实验泵浦或定时诊断应用。

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