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September 18, 2025Journal of Applied Crystallography2 citationsOpen Access

DXRD: a user-friendly suite of two- and multiple-beam dynamical X-ray diffraction programs

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XHXianrong HuangLALahsen Assoufid

Key Points

  • DXRD enables accurate computations of dynamical x-ray diffraction in multiple-crystal geometries, enhancing experimental design.
  • The program suite calculates rocking curves and Darwin curves in both the bragg and laue cases for varying angles.
  • Utilizing graphical user interfaces, DXRD simplifies complex calculations for users, making advanced techniques more accessible.
  • Designed for x-ray spectroscopy and crystal characterization, DXRD aids in developing synchrotron optics components efficiently.

Abstract

The DXRD program suite consisting of a series of dynamical theory programs is introduced for computing dynamical X-ray diffraction from single crystals. Its interactive graphical user interfaces (GUIs) allow general users to make complicated calculations with minimal effort. It can calculate plane-wave Darwin curves of single crystals (or multiple crystals) for both the Bragg and Laue cases, including grazing-incidence diffraction and backward diffraction (with Bragg angles approaching 90°). It is also capable of simulating rocking curves for divergent incident X-ray beams with finite bandwidths. A unique feature of DXRD is that it provides a convenient GUI-based multiple-beam diffraction program that can accurately compute arbitrary N -beam diffraction of any geometry using a universal 4 N × 4 N matrix method. DXRD also provides a mapping program for plotting all the multiple-beam diffraction lines (monochromator glitches) in the azimuth–energy coordinate system. All these functions make DXRD a convenient and powerful software tool for designing crystal-based synchrotron/X-ray optics (monochromators, analyzers, polarizers, phase plates etc. ) and for crystal characterization, X-ray spectroscopy and X-ray diffraction teaching.

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Cite This Study

Huang et al. (2025) studied this question.

synapsesocial.com/papers/68d463e231b076d99fa63184https://doi.org/10.1107/s1600576725007538
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