Multi-platform static and dynamic compression and complete EOS modeling of ultra-wide bandgap semiconductor Ga<sub>2</sub>O<sub>3</sub>
ORAL · Invited
Abstract
Ga2O3 is a transparent semiconducting oxide with an ultra-large band gap. Its multiple low-symmetry
crystal structures and thermal anisotropy make experiments, density functional theory (DFT) simulations,
and equation of state (EOS) design challenging, which motivates us to push boundaries of both
experimental and modelling methods.
The inter-disciplinary topic of kinetics of dynamically driven phase transitions is at the forefront of
condensed matter physics, both for its theoretical importance and its relevance to technological
applications at extreme conditions of pressure and temperature.
We present, for Ga2O3 , quantitative, the atomic-scale kinetics of a dynamically driven phase transition,
alongside static and dynamic compression data, dynamic temperature measurements and new DFT
calculations at extreme conditions.
We leverage results from multiple experimental platforms: Z and Thor pulsed power facilities and the
STAR gas gun facility at SNL and HPCAT and DCS x-ray diffraction facilities at the Advanced Photon Source.
The various parts of the project come together in a multiphase, broad range EOS and the first wide-ranging
phase diagram for Ga2O3 , covering four solid phases and the liquid.
crystal structures and thermal anisotropy make experiments, density functional theory (DFT) simulations,
and equation of state (EOS) design challenging, which motivates us to push boundaries of both
experimental and modelling methods.
The inter-disciplinary topic of kinetics of dynamically driven phase transitions is at the forefront of
condensed matter physics, both for its theoretical importance and its relevance to technological
applications at extreme conditions of pressure and temperature.
We present, for Ga2O3 , quantitative, the atomic-scale kinetics of a dynamically driven phase transition,
alongside static and dynamic compression data, dynamic temperature measurements and new DFT
calculations at extreme conditions.
We leverage results from multiple experimental platforms: Z and Thor pulsed power facilities and the
STAR gas gun facility at SNL and HPCAT and DCS x-ray diffraction facilities at the Advanced Photon Source.
The various parts of the project come together in a multiphase, broad range EOS and the first wide-ranging
phase diagram for Ga2O3 , covering four solid phases and the liquid.
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Presenters
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Pat Kalita
Sandia National Laboratories
Authors
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Pat Kalita
Sandia National Laboratories
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Scott D Crockett
Los Alamos Natl Lab
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Travis Sjostrom
Los Alamos National Laboratory
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Justin L Brown
Sandia National Laboratories
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Paul E Specht
Sandia National Laboratories
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joshua P townsend
Sandia National Laboratories
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Philippe F Weck
Sandia National Laboratories
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Jacob T Banasek
Sandia National Laboratories, University of California San Diego
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David E Bliss
Sandia National Laboratories
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Heath Hanshaw
Sandia National Laboratories
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Kyle R Cochrane
Sandia National Laboratories
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Bernardo G Farfan
Sandia National Laboratories
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Scott Alexander
Sandia National Laboratories
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Marcus D Knudson
Sandia National Laboratories
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Christopher T Seagle
Sandia National Laboratories