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Des accélérateurs laser-plasma aux sources de rayonnement X femtoseconde : étude, développement et applications

机译:从激光等离子加速器到飞秒X射线源:研究,开发和应用

摘要

During the relativistic interaction between a short and intense laser pulse and an underdense plasma, electrons can be injected and accelerated up to hundreds of MeV in an accelerating structure formed in the wake of the pulse: this is the so-called laser-plasma accelerator. One of the major perspectives for laser-plasma accelerators resides in the realization of compact sources of femtosecond x-ray beams. In this thesis, two x-ray sources was studied and developed. The betatron radiation, intrinsic to laser-plasma accelerators, comes from the transverse oscillations of electrons during their acceleration. Its characterization by photon counting revealed an x-ray beam containing 10^9 photons, with energies extending above 10 keV. We also developed an all-optical Compton source producing photons with energies up to hundreds of keV, based on the collision between a photon beam and an electron beam. The potential of these x-ray sources was highlighted by the realization of single shot phase contrast imaging of a biological sample. Then, we showed that the betatron x-ray radiation can be a powerful tool to study the physics of laser-plasma acceleration. We demonstrated the possibility to map the x-ray emission region, which gives a unique insight into the interaction, permitting us for example to locate the region where electrons are injected. The x-ray angular and spectral properties allow us to gain information on the transverse dynamics of electrons during their acceleration.
机译:在短而强的激光脉冲与低密度等离子体之间的相对论相互作用中,可以注入电子,并以脉冲后形成的加速结构将高达数百MeV的电子加速:这就是所谓的激光等离子体加速器。激光等离子体加速器的主要观点之一是实现飞秒X射线束的紧凑源。本文研究和开发了两种X射线源。激光等离子体加速器固有的电子感应加速器辐射来自电子在加速过程中的横向振荡。通过光子计数的表征揭示了包含10 ^ 9个光子的X射线束,其能量扩展到10 keV以上。我们还基于光子束和电子束之间的碰撞,开发了一种全光康普顿源,产生能量高达数百keV的光子。这些x射线源的潜力通过生物样品单次相衬成像的实现而得到了彰显。然后,我们证明了电子感应加速器的X射线辐射可以成为研究激光等离子体加速物理学的有力工具。我们证明了绘制X射线发射区域的可能性,这为相互作用提供了独特的见解,例如使我们能够定位注入电子的区域。 X射线的角度和光谱特性使我们能够获得电子在加速过程中的横向动力学信息。

著录项

  • 作者

    Corde Sébastien;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 fr
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