National Synchrotron Light Source II, Brookhaven National Laboratory, Upton, New York 11973, USA.
Phys Rev Lett. 2011 Oct 7;107(15):155503. doi: 10.1103/PhysRevLett.107.155503.
We have studied the effects of multiple-wave diffraction in a novel optical scheme recently published by Shvyd'ko et al. utilizing Bragg diffraction of x rays in backscattering geometry from asymmetrically cut crystals for achieving energy resolutions beyond the intrinsic width of the Bragg reflection. By numerical simulations based on dynamic x-ray diffraction and by experimentation involving two-dimensional angular scans of the back-reflecting crystal, multiple-wave diffraction was found to contribute up to several tens percent loss of efficiency but can be avoided without degrading the energy resolution of the original scheme by careful choice of azimuthal orientation of the diffracting crystal surface and by tilting of the crystal perpendicular to the dispersion plane.
我们最近研究了 Shvyd'ko 等人提出的一种新颖光学方案中的多次衍射效应,该方案利用反向散射几何中的 X 射线布拉格衍射,从非对称切割晶体中实现了超出布拉格反射固有宽度的能量分辨率。通过基于动态 X 射线衍射的数值模拟以及涉及回射晶体二维角度扫描的实验,发现多次衍射会导致效率损失高达百分之几十,但通过仔细选择衍射晶体表面的方位角以及晶体相对于色散平面的倾斜,可以避免这种情况,而不会降低原始方案的能量分辨率。