GCCM Invited Session: Compression of Condensed Matter

FOCUS · MAR-B15 · ID: 3115412







Presentations

  • ORAL · Invited

    Publication: Pope, Andrew D., et al. "High-pressure phase transition in 3-D printed nanolamellar high-entropy alloy by imaging and simulation insights." Scientific Reports 14.1 (2024): 16472.

    Pope, Andrew D., et al. "Phase stability of a eutectic high entropy alloy under extremes of pressures and temperatures." AIP Advances 14.2 (2024).

    Pope, Andrew D., et al. "Nanolamellar phase transition in an additively manufactured eutectic high-entropy alloy under high pressures." AIP Advances 13.3 (2023).

    Katagiri, Kento, et al. "Static and shock compression studies of eutectic high-entropy alloy AlCoCrFeNi2. 1 to ultrahigh pressures." Journal of Applied Physics 135.9 (2024).

    Chakrabarty, Kallol, et al. "High-Pressure High-Temperature Melting and Recrystallization of 3-D Printed and Annealed Nanolamellar Alloys." Submitted Summer 2024

    Presenters

    • Andrew D Pope

      • University of Alabama in Birmingham

    Authors

    • Andrew D Pope

      • University of Alabama in Birmingham

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  • ORAL · Invited

    Publication: Racioppi, S., Saffarian-Deemyad, I., Holle, W., Belli, F., Ferry, R., Kenney-Benson, C., ... & Deemyad, S. (2023). Phase boundaries, isotope effect and superconductivity of lithium under hydrostatic conditions. arXiv preprint arXiv:2312.17498.

    Presenters

    • Shanti Deemyad

      • University of Utah

    Authors

    • Shanti Deemyad

      • University of Utah
    • William Holle

      • University of Utah
    • Irenka Saffarian-Deemyad

      • University of Stanford
    • Stefano Racioppi

      • State Univ of NY - Buffalo
    • Eva D Zurek

      • State Univ of NY - Buffalo
    • Francesco Belli

      • State Univ of NY - Buffalo
    • Curtis Kenney-Benson

      • Argonne National Laboratory
    • Jesse S Smith

      • Argonne National Laboratory
    • Richard Ferry

      • Argonne National Lab

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  • ORAL · Invited

    Publication: Published: de Villa, Kyla, Felipe González-Cataldo, and Burkhard Militzer. "Double superionicity in icy compounds at planetary interior conditions." Nature Communications 14.1 (2023): 7580.
    Submitted: de Villa, Kyla, Felipe González-Cataldo, and Burkhard Militzer. "Experimental Pathways for Detecting Double Superionicity in Planetary Ices." Contributions to Plasma Physics (submitted).

    Presenters

    • Kyla de Villa

      • University of California, Berkeley

    Authors

    • Kyla de Villa

      • University of California, Berkeley
    • Felipe J Gonzalez

      • University of California, Berkeley
    • Burkhard Militzer

      • University of California, Berkeley

    View abstract →