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Emittance measurements from a laser-driven electron injector.

机译:激光驱动电子注入器的发射率测量。

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摘要

The Gun Test Facility (GTF) at the Stanford Linear Accelerator Center was constructed to develop an appropriate electron beam suitable for driving a short wavelength free electron laser (FEL) such as the proposed Linac Coherent Light Source (LCLS). For operation at a wavelength of 1.5 Å, the LCLS requires an electron injector that can produce an electron beam with approximately I π mm-mrad normalized rms emittance with at least 1 nC of charge in a 10 ps or shorter bunch.; The GTF consists of a photocathode rf gun, emittance-compensation solenoid, 3 m linear accelerator (linac), drive laser, and diagnostics to measure the beam. The rf gun is a symmetrized 1.6 cell, S-band, high gradient, room temperature, photocathode structure. Simulations show that this gun when driven by a temporally and spatially shaped drive laser, appropriately focused with the solenoid, and further accelerated in linac can produce a beam that meets the LCLS requirements.; This thesis describes the initial characterization of the laser and electron beam at the GTF. A convolved measurement of the relative timing between the laser and the rf phase in the gun shows that the jitter is less than 2.5 ps rms. Emittance measurements of the electron beam at 35 MeV are reported as a function of the (Gaussian) pulse length and transverse profile of the laser as well as the charge of the electron beam at constant phase and gradient in both the gun and linac. At 1 nC the emittance was found to be ∼13 π mm-mrad for 5 ps, and 8 ps long laser pulses. At 0.5 nC the measured emittance decreased approximately 20% in the 5 ps case and 40% in the 8 ps case. These measurements are between 40–80% higher than simulations for similar experimental conditions. In addition, the thermal emittance of the electron beam was measured to be 0.15 π mm-mrad.
机译:斯坦福线性加速器中心的机枪测试设施(GTF)旨在开发适合于驱动短波自由电子激光器(FEL)的合适电子束,例如拟议的直线加速器相干光源(LCLS)。为了在1.5Å的波长下工作,LCLS需要一个电子注入器,该电子注入器可以产生10 ps或更短的束中具有至少1 nC电荷的近似Iπmmmrad归一化rms发射的电子束。 GTF由光电阴极射频枪,发射补偿螺线管,3 m线性加速器(直线加速器),驱动激光和用于测量光束的诊断程序组成。射频枪是对称的1.6单元,S形,高梯度,室温,光电阴极结构。仿真表明,当该枪由时间和空间形状的驱动激光器驱动时,用螺线管适当聚焦,并在直线加速器中进一步加速,可以产生满足LCLS要求的光束。本文描述了在GTF上激光和电子束的初始特征。卷积测量激光与喷枪中rf相位之间的相对时间表明,抖动小于2.5 ps rms。据报道,电子束在35 MeV处的发射率测量值是(高斯)脉冲长度和激光器横向轮廓以及枪和直线加速器中恒定相位和梯度下电子束电荷的函数。在1 nC时,发现5 ps和8 ps长的激光脉冲的发射率约为13πmm-mrad。在0.5 nC下,测得的发射率在5 ps情况下降低了约20%,在8 ps情况下降低了40%。这些测量结果比类似实验条件下的模拟结果高40-80%。另外,测得电子束的热发射为0.15πmmmrad。

著录项

  • 作者

    Reis, David A.;

  • 作者单位

    The University of Rochester.;

  • 授予单位 The University of Rochester.;
  • 学科 Physics Elementary Particles and High Energy.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 204 p.
  • 总页数 204
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高能物理学;
  • 关键词

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