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Photocathode rf gun emittance measurements using variable-length laser pulses

机译:使用可变长度激光脉冲测量光电阴极RF枪的发射率

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Abstract: The Gun Test Facility (GTF) at the Stanford Linear Accelerator Center (SLAC) was created to develop an appropriate injector for the proposed Linac Coherent Light Source (LCLS) at SLAC. The LCLS design requires the injector to produce a beam with at least 1 nC of charge in a 10 ps or shorter pulse with no greater than 1 $pi mm-mrad normalized rms emittance. The first photoinjector under study at the GTF is a 1.6 cell S-band symmetrized gun with an emittance compensation solenoid. Emittance measurements, reported here, were made as function of the transverse laser pulse shape and the Gaussian longitudinal laser pulse length. The lowest achieved emittance to data with 1 nC of charge is 5.6 $pi mm-mrad and was obtained with both a Gaussian longitudinal and transverse pulse shape with 5 ps FWHM and 2.4 mm FWHM respectively. The measurement is in agreement with a PARMELA simulation using measured beam parameters. There are indications that the accelerator settings used in the results presented here were not optimal. Simulations indicate that a normalized emittance meeting the LCLS requirement can be obtained using appropriately shaped transverse and temporal laser/electron beam pulses. Work has begun on producing temporal flat top laser pulses which combined with transverse clipping of the laser is expected to lower the emittance to approximately 1 $pi mm-mrad for 1 nC beams with optimal accelerator settings. !16
机译:摘要:斯坦福线性加速器中心(SLAC)的枪支测试设施(GTF)的创建是为了为SLAC拟议的Linac相干光源(LCLS)开发合适的喷油器。 LCLS设计要求注入器以10 ps或更短的脉冲产生具有至少1 nC电荷的光束,且不大于1 ppi mm-mrad归一化rms发射。在GTF上研究的第一台光电注入器是带有发射补偿螺线管的1.6单元S形对称喷枪。在此报告的发射率测量是根据横向激光脉冲形状和高斯纵向激光脉冲长度进行的。电荷为1 nC时,数据的最低发射发射率为5.6μpimm-mrad,这是通过分别具有5 ps FWHM和2.4 mm FWHM的高斯纵向和横向脉冲形状获得的。该测量与使用测量光束参数的PARMELA模拟一致。有迹象表明,此处显示的结果中使用的加速器设置不是最佳的。仿真表明,使用适当形状的横向和瞬时激光/电子束脉冲可以获得符合LCLS要求的归一化发射率。已经开始产生时间平顶激光脉冲的工作,该脉冲与激光器的横向削波相结合,有望在具有最佳加速器设置的情况下将1 nC光束的发射率降低至大约1 ppi mm-mrad。 !16

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