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首页> 外文期刊>Physical Review. Accelerators and Beams >Electron beam energy chirp control with a rectangular corrugated structure at the Linac Coherent Light Source
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Electron beam energy chirp control with a rectangular corrugated structure at the Linac Coherent Light Source

机译:在直线加速器相干光源处具有矩形波纹结构的电子束能量chi控制

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Electron beam energy chirp is an important parameter that affects the bandwidth and performance of a linac-based, free-electron laser. In this paper we study the wakefields generated by a beam passing between flat metallic plates with small corrugations, and then apply such a device as a passive dechirper for the Linac Coherent Light Source (LCLS) energy chirp control with a multi-GeV and femtosecond electron beam. Similar devices have been tested in several places at relatively low energies ($ensuremath{sim}100ext{ }mathrm{MeV}$) and with relatively long bunches ($1ext{ }ext{ }mathrm{ps}$). In the parameter regime of the LCLS dechirper, with the corrugation size similar to the gap between the plates, the analytical solutions of the wakefields are no longer applicable, and we resort to a field matching program to obtain the wakes. Based on the numerical calculations, we fit the short-range, longitudinal wakes to simple formulas, valid over a large, useful parameter range. Finally, since the transverse wakefields---both dipole and quadrupole---are strong, we compute and include them in beam dynamics simulations to investigate the error tolerances when this device is introduced in the LCLS.
机译:电子束能量chi是影响基于直线加速器的自由电子激光器的带宽和性能的重要参数。在本文中,我们研究了光束在小波纹金属平板之间通过所产生的尾波场,然后将其用作无源减振器,用于具有多GeV和飞秒电子的直线加速器相干光源(LCLS)能量chi控制光束。相似的设备已经在多个地方以相对较低的能量($ ensuremath { sim} 100 text {} mathrm {MeV} $)进行了测试,并且具有相对较长的束($> 1 text {} text {} mathrm {ps} $)。在LCLS减震器的参数方案中,瓦楞纸尺寸类似于板之间的间隙,尾流场的解析解不再适用,我们诉诸于现场匹配程序来获取尾流。根据数值计算,我们将短程,纵向尾波拟合为简单的公式,这些公式在较大的有用参数范围内有效。最后,由于横向尾波场(偶极子和四极子)都很强,因此我们将其计算并包含在射束动力学仿真中,以研究将这种器件引入LCLS时的误差容限。

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