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单通道X射线自由电子激光中功率演化与聚束的唯象分析和数值分析

Phenomenological and numerical analysis of power evolution and bunching in single-pass X-ray FELs.

作者信息

Zhukovsky K, Kalitenko A

机构信息

Department of Theoretical Physics, Faculty of Physics, M. V. Lomonosov Moscow State University, Moscow 119991, Russian Federation.

出版信息

J Synchrotron Radiat. 2019 Jan 1;26(Pt 1):159-169. doi: 10.1107/S1600577518012444.

Abstract

The harmonic power and bunching evolution in X-ray single-pass free-electron lasers (FELs) is modelled and the harmonic generation in a phase-shifted two-frequency FEL is explored. The advanced phenomenological FEL model, which is validated numerically and experimentally, is employed. The model accounts for major losses for each harmonic individually; it is compared with reported experimental data and with PERSEO numerical simulations, which are performed here for a variety of experiments. The latter cover the radiation wavelength range 0.15-300 nm. The phenomenological description is based on a few key FEL parameters: electron beam section, current, energy and its spread and divergence. The model is employed for modelling harmonic bunching and power evolution in a phase-shifted X-ray FEL with a two-frequency undulator, where lower harmonics with numbers less than nth are suppressed by the electron-photon phase shift of kπ/n, k = 2, 4, …, between the undulator sections. The benefits of the two-frequency phase-shifted FEL are highlighted. FEL-induced energy spread is shown to be three times lower than in a FEL without the phase-shift. The high-power harmonic and sub-harmonic radiation in such a FEL is demonstrated. In particular, powerful ∼14 GW X-ray radiation at λ = 0.15 nm from electrons with energy of 5.47 GeV and beam current ∼3.66 kA is possible in a two-frequency phase-shifted FEL at 30 m; this constitutes half of a FEL length where a common planar undulator radiates the same wavelength and power at the fundamental harmonic. Moreover, about a three times lower energy spread is induced by the dominant fifth harmonic, and the harmonic power can be thousands of times higher than in a common planar undulator FEL.

摘要

对X射线单程自由电子激光器(FEL)中的谐波功率和聚束演化进行了建模,并研究了相移双频FEL中的谐波产生。采用了经过数值和实验验证的先进唯象FEL模型。该模型分别考虑了每个谐波的主要损耗;将其与报告的实验数据以及在此针对各种实验进行的PERSEO数值模拟进行了比较。后者涵盖了0.15 - 300 nm的辐射波长范围。唯象描述基于几个关键的FEL参数:电子束截面、电流、能量及其展宽和发散。该模型用于对具有双频波荡器的相移X射线FEL中的谐波聚束和功率演化进行建模,其中波荡器段之间kπ/n(k = 2, 4, …)的电子 - 光子相移抑制了小于第n阶的低阶谐波。突出了双频相移FEL的优势。结果表明,FEL诱导的能量展宽比无相移的FEL低三倍。展示了这种FEL中的高功率谐波和亚谐波辐射。特别是,在30 m长的双频相移FEL中,能量为5.47 GeV、束流约为3.66 kA的电子有可能产生波长为0.15 nm、功率约为14 GW的强大X射线辐射;这相当于普通平面波荡器在基波处辐射相同波长和功率时FEL长度的一半。此外,主导的第五谐波引起的能量展宽大约低三倍,并且谐波功率可能比普通平面波荡器FEL高数千倍。

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