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February 2, 2026Journal of Synchrotron Radiation0 citationsOpen Access

Theoretical framework for soft X-ray Fourier transform spectroscopy using the Wigner function

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CCC ChenALAndrew LindburgHDHonghe Ding

Key Points

  • This work aims to develop a theoretical framework for analyzing partially coherent Gaussian radiation in Fourier transform spectroscopy applications.
  • Developed a theoretical model using the Wigner function for radiation propagation.
  • Analyzed the performance of a modified Mach–Zehnder interferometer for FTS applications.
  • Conducted comparisons of interference patterns and interferograms with past studies.
  • Demonstrated that the transverse coherence length requirement for detectable modulation is less stringent than assumed.
  • Showed theoretical performance of the interferometer across various wavelengths in the soft X-ray regime.

Abstract

This work presents a theoretical framework for the propagation of partially coherent Gaussian radiation in a modified Mach–Zehnder interferometer designed for Fourier transform spectroscopy (FTS) applications. Using the Wigner function formalism, we analytically propagate the radiation through the system and benchmark our approach by comparing the resulting interference pattern and interferogram with previous works in the diffraction limit. Our analysis reveals that the transverse coherence length requirement of the incident light field for detectable modulation is less stringent than previously assumed. Additionally, we provide theoretical demonstrations of FTS performance across various wavelengths using the proposed setup. These findings underscore the potential of this interferometer to achieve high-resolution FTS in the soft X-ray regime.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/6980fecbc1c9540dea81138chttps://doi.org/10.1107/s1600577525011452
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