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Experimental and analytical study of a high gain self amplified spontaneous emission free electron laser operating in a large spectral bandwidth regime.

机译:在大光谱带宽范围内工作的高增益自放大自发无辐射电子激光器的实验和分析研究。

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摘要

The drive to create and measure ultra-short pulses in the x-ray regime advances the ongoing development of free electron lasers (FEL). Several proposed schemes, to shorten the pulse length of the radiation, involve driving the FEL with a chirped (linear longitudinal phase space correlation) electron beam in the self amplified spontaneous emission (SASE) mode. This dissertation examines the experiments conducted under such conditions, canvassing analytical and numerical studies of beam dynamics and radiation properties, experimental observations, and descriptions of the development of novel diagnostics.; The VISA (Visible-Infrared SASE Amplifier) program has achieved saturation at 840 nm within a 4 m long undulator. A novel bunch compression mechanism during transport was discovered and ultimately responsible for the high peak current required to drive the FEL. Start-to-end simulations, detailing the dynamics from electron beam inception at the photocathode to the FEL radiation properties at the undulator, were successfully benchmarked to observable data.; The VISA II experiment is an extension of this SASE FEL operating under different experimental conditions. Driving the SASE FEL with a chirped electron beam requires maintaining the chirp throughout transport by the use of sextupole magnets to correct for second-order compression effects. The emitted radiation is frequency chirped, diagnosed via a modified frequency resolved optical gating (FROG) technique. Specific numerical simulations and diagnostic developments are presented.; A set of measurements, without sextupole corrections, displays anomalous features, namely large spectral bandwidth of the radiation at stable and sustained high gain lasing. The bandwidth has an rms value of 21 nm (12% full width), previously unobserved in a FEL. In addition, the far-field angular distribution yields a hollow mode structure, similar to earlier results yet more pronounced in angle. Start-to-end simulations reproduced the most striking features of this radiation and yielded insight into the mechanisms of the unexpected behavior. It was deduced that the dominant source of the pulse broadening is the off-axis emission which emits coherently into angles as large as 2.5 mrad. A diagnostic to measure the spectral angular distribution of the FEL intensity was developed. These findings and experimental schemes are detailed in this dissertation.
机译:在X射线状态下创建和测量超短脉冲的驱动力推动了自由电子激光器(FEL)的不断发展。为了缩短辐射的脉冲长度,提出了几种方案,涉及以自放大自发发射(SASE)模式用with(线性纵向相空间相关)电子束驱动FEL。本文考察了在这种条件下进行的实验,探讨了光束动力学和辐射特性的分析和数值研究,实验观察以及对新型诊断学发展的描述。 VISA(可见光SASE放大器)程序已在4 m长的起伏器中在840 nm处达到饱和。发现了一种在运输过程中新颖的束压缩机制,该机制最终导致驱动FEL所需的高峰值电流。从头到尾的仿真,详细介绍了从光电阴极的电子束入射到波荡器的FEL辐射特性的动力学,已成功地建立了可观察数据的基准。 VISA II实验是该SASE FEL在不同实验条件下运行的扩展。用a电子束驱动SASE FEL需要通过使用六极磁体来校正整个二阶压缩效应,从而在整个传输过程中保持rp。发射的辐射被frequency调,通过改进的频率分辨光学选通(FROG)技术进行诊断。提出了具体的数值模拟和诊断方法。一组未经六极校正的测量结果显示出异常特征,即在稳定且持续的高增益激光作用下辐射的大光谱带宽。带宽的均方根值为21 nm(全宽的12%),以前在FEL中没有观察到。另外,远场角分布产生空心模式结构,类似于早期结果,但角度更明显。从头到尾的模拟重现了这种辐射的最显着特征,并深入了解了意外行为的机理。可以推断出,脉冲展宽的主要来源是离轴发射,该发射相干地发射到2.5 mrad的角度。开发了一种用于测量FEL强度光谱角分布的诊断程序。本文详细介绍了这些发现和实验方案。

著录项

  • 作者

    Andonian, Gerard Cosmos.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Physics Radiation.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 132 p.
  • 总页数 132
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子核物理学、高能物理学;
  • 关键词

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