APS Logo

X-ray imaging of melt, crystallization, and solid-solid phase transitions in the diamond anvil cell

ORAL

Abstract

Through collaboration between LLNL and the Extreme Condition Beamline at PETRA-III, new technical advancements have enabled time-resolved, simultaneous x-ray imaging and diffraction in the diamond anvil cell. Combined with in-situ diffraction, we present experimental results achieving ultra-fast propagation-based phase-contrast imaging of materials under variable pressure–temperature environments, including materials opaque to visible light, on millisecond to minute time-scales using both laser and resistive heating techniques. We utilize a combination of both static and dynamic diamond anvil cells to characterize the kinetics of high-pressure phase transitions, through direct visualization of solid-solid, solid-liquid, and liquid-solid transformations. This imaging technique allows us to visualize melting and crystallite growth, evolution of crystallite morphology, and observe nucleation sites during varying pressure and/or temperature conditions. Quantifying the pressure and temperature effects on crystallization mechanisms, nucleation and growth processes, and rates of transformations, will provide valuable kinetic parameters for our understanding phase transformations within materials under extreme conditions.

Publication: Ehrenreich-Petersen, E., Massani, B., Engler, T., Pardo, O. S., Glazyrin, K., Giordano, N., Hagemann, J., Sneed, D., Fedotenko, T., Campbell, D. J., Wendt, M., Wenz, S., Schroer, C. G., Trabs, M., McWilliams, R. S., Liermann, H.-P., Jenei, Z., & O'Bannon, E. F. (2025). X-ray phase contrast imaging and diffraction in the laser-heated diamond anvil cell: A case study on the high-pressure melting of Pt. Results in Physics, 69, 108132. https://doi.org/10.1016/j.rinp.2025.108132<br><br>Husband, R. J., Hagemann, J., O'Bannon, E. F., Liermann, H.-P., Glazyrin, K., Sneed, D. T., Lipp, M. J., Schropp, A., Evans, W. J., & Jenei, Zs. (2022). Simultaneous imaging and diffraction in the dynamic diamond anvil cell. Review of Scientific Instruments, 93(5), 053903. https://doi.org/10.1063/5.0084480

Presenters

  • Olivia Pardo

    Lawrence Livermore National Laboratory

Authors

  • Olivia Pardo

    Lawrence Livermore National Laboratory

  • Emma Ehrenreich-Petersen

    Deutsches Elektronen-Synchrotron DESY

  • Bernhard Massani

    University of Edinburgh

  • Thea Engler

    Deutsches Elektronen-Synchrotron DESY

  • Konstantin Glazyrin

    Deutsches Elektronen-Synchrotron DESY, Deutsches Elektronen-Synchrotron

  • Nico Giordano

    Deutsches Elektronen-Synchrotron DESY

  • Johannes Hagemann

    Deutsches Elektronen-Synchrotron DESY

  • Daniel Sneed

    Lawrence Livermore National Laboratory

  • Stewart McWilliams

    The University of Edinburgh

  • Hanns-Peter Liermann

    Deutsches Elektronen-Synchrotron DESY

  • Zsolt Jenei

    Lawrence Livermore National Laboratory

  • Earl O'Bannon

    Lawrence Livermore National Laboratory, Lawrence Livermore Natl Lab