Stutman Dan, Finkenthal Michael, Moldovan Nicolae
Department of Physics and Astronomy, Johns Hopkins University, Baltimore, Maryland 21030, USA.
Appl Opt. 2010 Sep 1;49(25):4677-86. doi: 10.1364/AO.49.004677.
Differential phase-contrast imaging with hard x rays can have important applications in medicine, material sciences, and energy research. Phase-contrast methods based on microperiodic optics, such as shearing interferometry, are particularly attractive because they allow the use of conventional x-ray tubes. To enable shearing interferometry with x rays up to 100?keV, we propose using grazing-incidence microperiodic mirrors. In addition, a simple lithographic method is proposed for the production of the microperiodic x-ray mirrors, based on the difference in grazing-incidence reflectivity between a low-Z substrate and a high-Z film. Using this method, we produced prototype mirrors with 5-100?mum periods and 90?mm active length. Experimental tests with x rays up to 60?keV indicate good microperiodic mirror reflectivity and high-contrast fringe patterns, encouraging further development of the proposed imaging concept.
硬X射线微分相衬成像在医学、材料科学和能源研究中具有重要应用。基于微周期光学的相衬方法,如剪切干涉测量法,特别具有吸引力,因为它们允许使用传统的X射线管。为了实现高达100keV的X射线剪切干涉测量,我们建议使用掠入射微周期镜。此外,基于低Z衬底和高Z薄膜之间掠入射反射率的差异,提出了一种用于制造微周期X射线镜的简单光刻方法。使用这种方法,我们制作了周期为5-100μm、有效长度为90mm的原型镜。高达60keV的X射线实验测试表明微周期镜具有良好的反射率和高对比度条纹图案,这鼓励了所提出成像概念的进一步发展。