Swiss Light Source, Paul Scherrer Institut, , Villigen PSI, Switzerland.
Philos Trans A Math Phys Eng Sci. 2014 Jan 27;372(2010):20130027. doi: 10.1098/rsta.2013.0027. Print 2014 Mar 6.
The monochromatic and polychromatic performance of a grating interferometer is theoretically analysed. The smallest detectable refraction angle is used as a metric for the efficiency in acquiring a differential phase-contrast image. Analytical formulae for the visibility and the smallest detectable refraction angle are derived for Talbot-type and Talbot-Lau-type interferometers, respectively, providing a framework for the optimization of the geometry. The polychromatic performance of a grating interferometer is investigated analytically by calculating the energy-dependent interference fringe visibility, the spectral acceptance and the polychromatic interference fringe visibility. The optimization of grating interferometry is a crucial step for the design of application-specific systems with maximum performance.
对光栅干涉仪的单色和多色性能进行了理论分析。最小可检测折射角被用作获取微分相差对比图像的效率指标。分别推导出了泰伯型和泰伯-劳型干涉仪的可见度和最小可检测折射角的解析公式,为优化几何形状提供了框架。通过计算能量相关的干涉条纹可见度、光谱带宽和多色干涉条纹可见度,对光栅干涉仪的多色性能进行了分析。光栅干涉仪的优化是设计具有最大性能的特定应用系统的关键步骤。