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Collective Dynamics and Coherent Diagnostics of Microbunched Relativistic Electron Beams.

机译:微束相对论电子束的集体动力学和相干诊断。

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摘要

The x-ray free-electron laser has established itself as the brightest available source of x-rays, extending the coherence and brilliance properties of conventional atomic lasers down to the sub-Angstrom level. The high-brightness electron beams that are used to drive the free-electron laser process, undergo a number of collective instabilities that can generate complex phase-space structures and induce the emission of coherent radiation, an effect that is generally termed microbunching instability.;The main subject of this dissertation is the collective evolution of beam microbunching under the effect of longitudinal space-charge forces. We develop a three-dimensional kinetic theory of space-charge effects leading to collective suppression and amplification of beam microbunching. This model gives, for the first time, a fully self-consistent description of the space-charge instability, with the inclusion of three-dimensional and thermal effects. After establishing a self-consistent theoretical foundation for space-charge effects, we present two experiments related to the space-charge instability. The generation of broadband coherent undulator radiation with a longitudinal space-charge amplifier is demonstrated experimentally for the first time. This experiment extends the capabilities of free-electron laser facilities by allowing the generation of coherent broadband radiation pulses, thus accessing regimes of operation currently unavailable for fourth generation light sources. Finally a coherent diffraction imaging technique for the reconstruction of beam microbunching is designed and experimentally tested. This technique is based on the application of an oversampling phase-retrieval method to the far-field coherent transition radiation emitted by a microbunched electron beam and has applications in the diagnostic of compressed electron beams and free-electron lasers.;While the microbunching instability is generally regarded as a detrimental effect, this work shows that the coherent effects associated with the induced microbunching can be optimized and used to our advantage for the development of new coherent radiation sources and advanced beam diagnostics.
机译:X射线自由电子激光器已经确立了自己作为最亮的X射线源的地位,从而将常规原子激光器的相干性和亮度特性扩展到了亚埃级。用来驱动自由电子激光过程的高亮度电子束会经历许多集体不稳定性,这些不稳定性会产生复杂的相空间结构并诱发相干辐射的发射,这种效应通常被称为微束不稳定性。本文的主要主题是在纵向空间电荷力的作用下,束微束的集体演化。我们开发了空间电荷效应的三维动力学理论,该理论导致了束微束的集体抑制和放大。该模型首次对空间电荷不稳定性进行了完全自洽的描述,其中包括三维效应和热效应。在建立了空间电荷效应的自洽理论基础之后,我们提出了两个与空间电荷不稳定性有关的实验。首次通过实验证明了使用纵向空间电荷放大器产生宽带相干波荡器辐射。通过允许产生相干的宽带辐射脉冲,该实验扩展了自由电子激光设备的功能,从而获得了第四代光源目前不可用的工作方式。最后,设计并实验了一种用于束微束重建的相干衍射成像技术。该技术基于对微束电子束发射的远场相干过渡辐射的过采样相位检索方法的应用,并且在压缩电子束和自由电子激光器的诊断中具有应用。通常被认为是有害作用,这项工作表明,与诱导微聚束有关的相干效应可以得到优化,并利用我们的优势开发新的相干辐射源和先进的光束诊断技术。

著录项

  • 作者

    Marinelli, Agostino.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Physics Optics.;Physics Fluid and Plasma.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 210 p.
  • 总页数 210
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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