Shvyd'ko Yuri
Advanced Photon Source, Argonne National Laboratory, Argonne, IL 60439, USA.
J Synchrotron Radiat. 2020 Sep 1;27(Pt 5):1227-1234. doi: 10.1107/S1600577520008292. Epub 2020 Jul 30.
Diffraction gratings with large angular dispersion rates are central to obtaining high spectral resolution in grating spectrometers operating over a broad spectral range from infrared to soft X-ray domains. The greatest challenge is of course to achieve large dispersion rates in the short-wavelength X-ray domain. Here it is shown that crystals in non-coplanar asymmetric X-ray Bragg diffraction can function as high-reflectance broadband soft X-ray diffraction gratings with dispersion rates that are at least two orders of magnitude larger than those that are possible with state-of-the-art man-made gratings. This opens new opportunities to design and implement soft X-ray resonant inelastic scattering (RIXS) spectrometers with spectral resolutions that are up to two orders of magnitude higher than what is currently possible, to further advance a very dynamic field of RIXS spectroscopy, and to make it competitive with inelastic neutron scattering. Examples of large-dispersion-rate crystal diffraction gratings operating near the 930 eV L absorption edge in Cu and of the 2.838 keV L-edge in Ru are presented.
在从红外到软X射线波段的宽光谱范围内工作的光栅光谱仪中,具有大角散率的衍射光栅是获得高光谱分辨率的核心。当然,最大的挑战是在短波长X射线波段实现大的色散率。本文表明,非共面非对称X射线布拉格衍射中的晶体可以用作高反射率宽带软X射线衍射光栅,其色散率比最先进的人造光栅至少大两个数量级。这为设计和实现软X射线共振非弹性散射(RIXS)光谱仪开辟了新机会,其光谱分辨率比目前所能达到的高出两个数量级,从而进一步推动RIXS光谱学这个非常活跃的领域,并使其与非弹性中子散射具有竞争力。文中给出了在铜的930 eV L吸收边附近以及钌的2.838 keV L边附近工作的大色散率晶体衍射光栅的实例。