An anisotropic Gaussian phase packet framework with Metropolis sampling reproduces finite-temperature thermal expansion, failure-site locations, and low-strain-rate inelastic onset in 2D silica glass.
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Predicting temperature-dependent failure and transformation zones in 2D silica glass through quasistatic Gaussian Phase Packets
An anisotropic Gaussian phase packet framework with Metropolis sampling reproduces finite-temperature thermal expansion, failure-site locations, and low-strain-rate inelastic onset in 2D silica glass.