Huang Lei, Wang Tianyi, Chubar Oleg, Dovillaire Guillaume, He An, Rakitin Maksim, Idir Mourad
Opt Express. 2022 Nov 7;30(23):41061-41074. doi: 10.1364/OE.470197.
X-ray wavefront measurement is an important beam diagnostic tool, especially for the diffraction-limited X-ray beam. These in situ diagnostics give a better understanding of beam imperfections, and they enable feedback for possible corrections and/or optical alignment improvements. Hartmann wavefront sensing is one of the promising techniques to perform in situ X-ray wavefront measurements. In this work, a simulation tool of the X-ray Hartmann Wavefront Sensor (HWS) is developed under the Synchrotron Radiation Workshop (SRW) framework. Using this new simulation capability, one can take advantage of the full SRW package to simulate Hartmann wavefront sensing with the beam traveling from the X-ray source to the sample through different X-ray optical components. This SRW HWS simulation tool can help to optimize the wavefront sensor parameters for a specific X-ray energy range. It can also simulate an in situ wavefront measurement experiment with a particular beamline optical layout and predict the expected results of the wavefront measurement under different beamline configurations.
X射线波前测量是一种重要的束流诊断工具,特别是对于衍射极限X射线束而言。这些原位诊断方法能让人更好地了解束流缺陷,还能为可能的校正和/或光学对准改进提供反馈。哈特曼波前传感是进行原位X射线波前测量的一种很有前景的技术。在这项工作中,在同步辐射工作室(SRW)框架下开发了一种X射线哈特曼波前传感器(HWS)的模拟工具。利用这种新的模拟能力,人们可以借助完整的SRW软件包,模拟光束从X射线源通过不同的X射线光学元件传播到样品时的哈特曼波前传感。这个SRW HWS模拟工具有助于针对特定的X射线能量范围优化波前传感器参数。它还可以模拟具有特定束线光学布局的原位波前测量实验,并预测在不同束线配置下波前测量的预期结果。