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锥形、衍射主导型逆自由电子激光器中被俘获电子的高能量增益。

High energy gain of trapped electrons in a tapered, diffraction-dominated inverse-free-electron laser.

作者信息

Musumeci P, Tochitsky S Ya, Boucher S, Clayton C E, Doyuran A, England R J, Joshi C, Pellegrini C, Ralph J E, Rosenzweig J B, Sung C, Tolmachev S, Travish G, Varfolomeev A A, Varfolomeev A A, Yarovoi T, Yoder R B

机构信息

Neptune Laboratory, Department of Physics and Astronomy, UCLA, Los Angeles, California 90095, USA.

出版信息

Phys Rev Lett. 2005 Apr 22;94(15):154801. doi: 10.1103/PhysRevLett.94.154801. Epub 2005 Apr 20.

Abstract

Energy gain of trapped electrons in excess of 20 MeV has been demonstrated in an inverse-free-electron-laser (IFEL) accelerator experiment. A 14.5 MeV electron beam is copropagated with a 400 GW CO2 laser beam in a 50 cm long undulator strongly tapered in period and field amplitude. The Rayleigh range of the laser, approximately 1.8 cm, is much shorter than the undulator length yielding a diffraction-dominated interaction. Experimental results on the dependence of the acceleration on injection energy, laser focus position, and laser power are discussed. Simulations, in good agreement with the experimental data, show that most of the energy gain occurs in the first half of the undulator at a gradient of 70 MeV/m and that the structure in the measured energy spectrum arises because of higher harmonic IFEL interaction in the second half of the undulator.

摘要

在一个逆自由电子激光(IFEL)加速器实验中,已经证明了被俘获电子的能量增益超过20兆电子伏特。一束14.5兆电子伏特的电子束与一束400吉瓦的二氧化碳激光束在一个长度为50厘米的波荡器中同向传播,该波荡器在周期和场振幅上有强烈的渐变。激光的瑞利范围约为1.8厘米,远短于波荡器长度,从而产生以衍射为主的相互作用。讨论了关于加速对注入能量、激光聚焦位置和激光功率的依赖性的实验结果。与实验数据吻合良好的模拟结果表明,大部分能量增益发生在波荡器前半部分,梯度为70兆电子伏特/米,并且测量能谱中的结构是由于波荡器后半部分的高次谐波IFEL相互作用产生的。

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