Physics Department, Boston University, Boston, MA 02215, USA.
J Synchrotron Radiat. 2012 Jan;19(Pt 1):66-73. doi: 10.1107/S0909049511040532. Epub 2011 Nov 15.
Successful X-ray photon correlation spectroscopy studies often require that signals be optimized while minimizing power density in the sample to decrease radiation damage and, at free-electron laser sources, thermal impact. This suggests exploration of scattering outside the Fraunhofer far-field diffraction limit d(2)/λ << R, where d is the incident beam size, λ is the photon wavelength and R is the sample-to-detector distance. Here it is shown that, in an intermediate regime d(2)/λ > R >> dξ/λ, where ξ is the structural correlation length in the material, the ensemble averages of the scattered intensity and of the structure factor are equal. Similarly, in the regime d(2)/λ > R >> dξ(τ)/λ, where ξ(τ) is a time-dependent dynamics length scale of interest, the ensemble-averaged correlation functions g(1)(τ) and g(2)(τ) of the scattered electric field are also equal to their values in the far-field limit. This broadens the parameter space for X-ray photon correlation spectroscopy experiments, but detectors with smaller pixel size and variable focusing are required to more fully exploit the potential for such studies.
成功的 X 射线光子相关光谱学研究通常需要在最小化样品功率密度的同时优化信号,以减少辐射损伤,并且在自由电子激光源中减少热影响。这表明需要探索 Fraunhofer 远场衍射极限之外的散射,即 d(2)/λ << R,其中 d 是入射光束的尺寸,λ 是光子波长,R 是样品到探测器的距离。本文表明,在中间区域 d(2)/λ > R >> dξ/λ 中,其中 ξ 是材料中的结构相关长度,散射强度和结构因子的集合平均值相等。同样,在 d(2)/λ > R >> dξ(τ)/λ 的区域中,其中 ξ(τ)是感兴趣的时变动力学长度尺度,散射电场的集合平均相关函数 g(1)(τ)和 g(2)(τ)也等于远场极限的值。这拓宽了 X 射线光子相关光谱学实验的参数空间,但需要具有更小像素尺寸和可变聚焦的探测器来更充分地利用这些研究的潜力。