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January 17, 2026Communications Materials0 citationsOpen Access

Ultrafast heat transfer in single palladium nanocrystals seen with an X-ray free-electron laser

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DYDavid YangJWJames WrigleyJGJack P. Griffiths

Key Points

  • The aim is to explore transient structural states in palladium nanocrystals subjected to ultrafast heating.
  • Used an optical laser to electronically heat individual palladium nanocrystals.
  • Employed an X-ray free-electron laser to measure Bragg peak evolution over time.
  • Analyzed how varying laser fluences affect strain and heat distribution.
  • Observed splitting of Bragg peaks at high laser fluences, indicating heterogeneous strain.
  • Noted a return to a single peak, corresponding to uniform heat distribution.
  • Validated findings with a lattice displacement and strain model that matched experimental data.

Abstract

Abstract We report transient highly strained structural states in individual palladium (Pd) nanocrystals, electronically heated using an optical laser, which precede their uniform thermal expansion. Using an X-ray free-electron laser probe, the evolution of individual 111 Bragg peaks is measured as a function of delay time at various laser fluences. Above a laser fluence threshold at a sufficient pump-probe delay, the Bragg peak splits into multiple peaks, indicating heterogeneous strain, before returning to a single peak, corresponding to even heat distribution throughout the lattice expanded crystal. Our findings are supported by a lattice displacement and strain model of a single nanocrystal at different delay times, which agrees with the experimental data. Our observations have implications for understanding femtosecond laser interactions with metals and the potential photo-catalytic performance of Pd.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/696b25f3d2a12237a93492d7https://doi.org/10.1038/s43246-025-01063-z
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