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Atomic, molecular and optical physics applications of longitudinally coherent and narrow bandwidth Free-Electron Lasers

机译:纵向相干和窄带宽自由电激光器的原子,分子和光学物理应用

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摘要

Short wavelength Free-Electron Lasers (FELs) are among the newest light sources available to scientists to probe a wide range of phenomena, with chemical, physical and biological applications, using soft and hard X-rays. These sources include the currently most powerful hard X-ray light sources in the world and are characterized by extremely high powers and high transverse coherence, but the first FELs had, and many still have, reduced longitudinal coherence. Now it is possible to achieve good longitudinal coherence (narrow bandwidth in the frequency domain) and here we discuss and illustrate a range of experiments utilizing this property, and their underlying physics. The primary applications are those which require high resolution (for example resonant experiments), or temporal coherence (for example coherent control experiments). The currently available light sources extend the vast range of laboratory laser techniques to short wavelengths.
机译:短波自由电子激光器(FEL)是科学家可以利用软X射线和硬X射线探测各种化学、物理和生物现象的最新光源之一。这些光源包括目前世界上最强大的硬X射线光源,其特点是具有极高的功率和高横向相干性,但第一批自由电子激光的纵向相干性已经降低,而且许多仍然降低。现在有可能实现良好的纵向相干性(频域中的窄带宽),在这里,我们讨论并演示了一系列利用这一特性的实验,以及它们的基本物理特性。主要应用是那些需要高分辨率(例如共振实验)或时间相干性(例如相干控制实验)的应用。目前可用的光源将实验室激光技术的广泛范围扩展到短波。

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