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一种基于锥形衍射的高效平面光栅单色仪,可在包括软X射线(2 - 8千电子伏特)在内的整个软X射线范围内进行连续调谐。

An efficient plane-grating monochromator based on conical diffraction for continuous tuning in the entire soft X-ray range including tender X-rays (2-8 keV).

作者信息

Jark Werner

机构信息

X-ray Fluorescence Beamline, Elettra - Sincrotrone Trieste ScpA, SS 14, km 163.5 in Area Science Park, Basovizza, 34149 Trieste, Italy.

出版信息

J Synchrotron Radiat. 2016 Jan;23(1):187-95. doi: 10.1107/S1600577515021839. Epub 2016 Jan 1.

Abstract

Recently it was verified that the diffraction efficiency of reflection gratings with rectangular profile, when illuminated at grazing angles of incidence with the beam trajectory along the grooves and not perpendicular to them, remains very high for tender X-rays of several keV photon energy. This very efficient operation of a reflection grating in the extreme off-plane orientation, i.e. in conical diffraction, offers the possibility of designing a conical diffraction monochromator scheme that provides efficient continuous photon energy tuning over rather large tuning ranges. For example, the tuning could cover photon energies from below 1000 eV up to 8 keV. The expected transmission of the entire instrument is high as all components are always operated below the critical angle for total reflection. In the simplest version of the instrument a plane grating is preceded by a plane mirror rotating simultaneously with it. The photon energy selection will then be made using the combination of a focusing mirror and exit slit. As is common for grating monochromators for soft X-ray radiation, the minimum spectral bandwidth is source-size-limited, while the bandwidth can be adjusted freely to any larger value. As far as tender X-rays (2-8 keV) are concerned, the minimum bandwidth is at least one and up to two orders of magnitude larger than the bandwidth provided by Si(111) double-crystal monochromators in a collimated beam. Therefore the instrument will provide more flux, which can even be increased at the expense of a bandwidth increase. On the other hand, for softer X-rays with photon energies below 1 keV, competitive relative spectral resolving powers of the order of 10000 are possible.

摘要

最近已证实,对于具有矩形轮廓的反射光栅,当以掠入射角照射且光束轨迹沿凹槽而非垂直于凹槽时,对于几keV光子能量的软X射线,其衍射效率仍然很高。反射光栅在极端离面取向(即圆锥衍射)下的这种高效运行,为设计一种圆锥衍射单色仪方案提供了可能性,该方案可在相当大的调谐范围内实现高效的连续光子能量调谐。例如,调谐范围可以覆盖从低于1000 eV到8 keV的光子能量。由于所有组件始终在全反射临界角以下运行,因此整个仪器的预期透射率很高。在仪器的最简单版本中,平面光栅之前有一个与其同步旋转的平面镜。然后将使用聚焦镜和出射狭缝的组合来进行光子能量选择。与用于软X射线辐射的光栅单色仪一样,最小光谱带宽受光源尺寸限制,而带宽可以自由调整到任何更大的值。就软X射线(2 - 8 keV)而言,最小带宽比准直光束中Si(111)双晶单色仪提供的带宽大至少一个到两个数量级。因此,该仪器将提供更多的通量,甚至可以以增加带宽为代价来提高通量。另一方面,对于光子能量低于1 keV的更软X射线,可能实现约10000的具有竞争力的相对光谱分辨率。

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