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用于材料科学的受激发射 X 射线。

Stimulated X-ray emission for materials science.

机构信息

Institute for Methods and Instrumentation of Synchrotron Radiation Research G-ISRR, Helmholtz-Zentrum Berlin für Materialien und Energie GmbH, Albert-Einstein-Straße 15, 12489 Berlin, Germany.

出版信息

Nature. 2013 Sep 12;501(7466):191-4. doi: 10.1038/nature12449. Epub 2013 Aug 21.

Abstract

Resonant inelastic X-ray scattering and X-ray emission spectroscopy can be used to probe the energy and dispersion of the elementary low-energy excitations that govern functionality in matter: vibronic, charge, spin and orbital excitations. A key drawback of resonant inelastic X-ray scattering has been the need for high photon densities to compensate for fluorescence yields of less than a per cent for soft X-rays. Sample damage from the dominant non-radiative decays thus limits the materials to which such techniques can be applied and the spectral resolution that can be obtained. A means of improving the yield is therefore highly desirable. Here we demonstrate stimulated X-ray emission for crystalline silicon at photon densities that are easily achievable with free-electron lasers. The stimulated radiative decay of core excited species at the expense of non-radiative processes reduces sample damage and permits narrow-bandwidth detection in the directed beam of stimulated radiation. We deduce how stimulated X-ray emission can be enhanced by several orders of magnitude to provide, with high yield and reduced sample damage, a superior probe for low-energy excitations and their dispersion in matter. This is the first step to bringing nonlinear X-ray physics in the condensed phase from theory to application.

摘要

共振非弹性 X 射线散射和 X 射线发射光谱可用于探测基本低能激发的能量和色散,这些激发决定了物质的功能:声子、电荷、自旋和轨道激发。共振非弹性 X 射线散射的一个主要缺点是需要高光子密度来补偿软 X 射线荧光产率低于百分之一。因此,主要的非辐射衰减会导致样品损坏,从而限制了这些技术的应用材料和可以获得的光谱分辨率。因此,提高产率是非常可取的。在这里,我们证明了在很容易用自由电子激光实现的光子密度下,对晶体硅的受激 X 射线发射。以非辐射过程为代价的核心激发态物质的受激辐射衰减减少了样品损坏,并允许在受激辐射的定向光束中进行窄带宽检测。我们推断出如何将受激 X 射线发射增强几个数量级,以便在减少样品损坏的情况下,以高产率提供物质中低能激发及其色散的优越探针。这是将凝聚相中的非线性 X 射线物理从理论应用于实践的第一步。

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