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首页> 外文期刊>Journal of Modern Optics >Non-linear processes in the interaction of atoms and molecules with intense EUV and X-ray fields from SASE free electron lasers (FELs)
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Non-linear processes in the interaction of atoms and molecules with intense EUV and X-ray fields from SASE free electron lasers (FELs)

机译:SASE自由电子激光(FEL)产生的强烈EUV和X射线场与原子和分子相互作用的非线性过程

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摘要

The advent of free electron laser (FEL) facilities capable of delivering high intensity pulses in the extreme-UV to X-ray spectral range has opened up a wide vista of opportunities to study and control light matter interactions in hitherto unexplored parameter regimes. In particular, current short wavelength FELs can uniquely drive non-linear processes mediated by inner shell electrons and in fields where the photon energy can be as high as 10 keV and so the corresponding optical period reaches below one attosecond. Combined with ultrafast optical lasers, or simply employing wavefront division, pump probe experiments can be performed with femtosecond time resolution. As single photon ionization of atoms and molecules is by now very well understood, they provide the ideal targets for early experiments by which not only FELs can be characterised and benchmarked but can also be the natural departure point in the hunt for non-linear behaviour of atomistic systems bathed in laser fields of ultrahigh photon energy. In this topical review we illustrate with specific examples the gamut of apposite experiments in atomic, molecular physics currently underway at the SCSS Test Accelerator (Japan), FLASH (Hamburg) and LCLS (Stanford).
机译:自由电子激光(FEL)设施的出现能够在极端的UV到X射线光谱范围内传递高强度脉冲,这为研究和控制迄今未探索的参数体系中的光物质相互作用开辟了广阔的前景。特别是,当前的短波长FEL可以独特地驱动由内壳电子介导的非线性过程,并且可以在光子能量高达10 keV的场中驱动,因此相应的光周期达到1阿秒以下。结合超快光学激光器,或简单地采用波前分割,可以以飞秒时间分辨率执行泵浦探针实验。到目前为止,由于原子和分子的单光子电离已经非常了解,它们为早期实验提供了理想的目标,通过这些实验,不仅可以表征和基准化FEL,而且还可以作为寻找非线性行为的自然出发点。原子系统沐浴在超高光子能量的激光场中。在本专题综述中,我们以具体示例说明了SCSS Test Accelerator(日本),FLASH(汉堡)和LCLS(斯坦福大学)目前正在进行的原子,分子物理学方面的适当实验。

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