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February 8, 2026Crystals0 citationsOpen Access

Lattice Anharmonicity and Grüneisen Parameter Estimation Using X-Ray Diffraction

SJSheetal JainACAditya ChughYKYoungchang Kim

Key Points

  • To estimate the Grüneisen parameter and anharmonic contributions using thermal expansion data from X-ray diffraction.
  • Conducted powder X-ray diffraction measurements across various temperatures (93–1373 K).
  • Utilized an effective interatomic potential model for analysis.
  • Empirically estimated the Grüneisen parameter and anharmonic contributions from thermal expansion data.
  • Grüneisen parameter values for most materials align with literature reports.
  • The method provides a convenient way to estimate parameters from a single measurement of thermal expansion.

Abstract

Powder X-ray diffraction measurements were carried out on various samples to characterize their thermal expansion over a wide temperature range (93–1373 K). Using an effective interatomic potential model, we present a method to empirically estimate the Grüneisen parameter, as well as cubic and quartic anharmonic contributions to the lattice potential. This method is further tested on materials for which thermal expansion data are readily available. For most of the materials surveyed, the Grüneisen parameter values match those reported in the literature, obtained using traditional techniques. Thus, this work presents a novel and convenient Grüneisen parameter estimation method that uses measurements of only one physical property, thermal expansion.

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Cite This Study

Jain et al. (2026) studied this question.

synapsesocial.com/papers/698828990fc35cd7a8848446https://doi.org/10.3390/cryst16020118
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