首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Application of partially coherent wavefront propagation calculations for design of coherence-preserving synchrotron radiation beamlines
【24h】

Application of partially coherent wavefront propagation calculations for design of coherence-preserving synchrotron radiation beamlines

机译:部分相干波前传播计算在保持相干同步辐射束线设计中的应用

获取原文
获取原文并翻译 | 示例

摘要

Ultra-low emittance third-generation synchrotron radiation (SR) sources, such as NSLS-II and MAX-IV, will offer excellent opportunities for further development of experimental techniques exploiting X-ray coherence. However, even in these new SR sources, the radiation produced by relativistic electrons (in undulators, wigglers and bending magnets) will remain only partially coherent in the X-ray spectral range. "Extraction" of "coherent portion" of the radiation flux and its transport to sample without loss of coherence must be performed by dedicated SR beamlines, optimized for particular types of experiments. Detailed quantitative prediction of partially coherent X-ray beam properties at propagation through optical elements, which is required for the optimization of such beamlines, can only be obtained from accurate and efficient physical-optics based numerical simulations. Examples of such simulations, made for NSLS-II beamlines, using "Synchrotron Radiation Workshop" (SRW) computer code, are presented. Special attention is paid to the numerical analysis of the basic properties of partially coherent undulator radiation beam and its distinctions from the Gaussian beam. Performance characteristics of importance for particular beamlines, such as radiation spot size and flux at sample vs size of secondary source aperture for high-resolution microscopy beamlines, are predicted by the simulations.
机译:超低发射率的第三代同步辐射(SR)源,例如NSLS-II和MAX-IV,将为进一步开发利用X射线相干性的实验技术提供极好的机会。但是,即使在这些新的SR光源中,相对论电子(在波动器,摆动器和弯曲磁体中)产生的辐射在X射线光谱范围内也将仅保持部分相干。辐射通量“相干部分”的“提取”及其在不损失相干性的情况下传输至样品的过程必须通过专用SR光束线进行,并针对特定类型的实验进行了优化。只有通过基于精确和有效的物理光学的数值模拟才能获得对这种光束线进行优化所需的,通过光学元件传播时部分相干X射线束特性的详细定量预测。给出了使用“同步辐射车间”(SRW)计算机代码针对NSLS-II光束线进行的此类模拟的示例。特别注意对部分相干波状起伏辐射束的基本特性进行数值分析及其与高斯光束的区别。通过仿真可以预测特定光束线的重要性能特征,例如辐射点的尺寸和样品的通量与高分辨率显微镜光束线的二次光源孔径的大小。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号