Terahertz-driven four-wave mixing at glass surfaces resolves vibrational modes and medium-range structural transitions in lead silicate glasses across a compositional series.
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2 Pith papers cite this work, alongside 163 external citations. Polarity classification is still indexing.
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A tunable microscopic model of network liquids with a liquid-liquid phase transition, analyzed via RFOT theory, predicts nanonucleation near the glass transition and links thermodynamic and kinetic anomalies when matched to water-like conditions.
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Terahertz-driven four-wave mixing at glass surfaces: Probing vibrational resonances and structural regimes
Terahertz-driven four-wave mixing at glass surfaces resolves vibrational modes and medium-range structural transitions in lead silicate glasses across a compositional series.
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Polyamorphism in Glassy Network Materials
A tunable microscopic model of network liquids with a liquid-liquid phase transition, analyzed via RFOT theory, predicts nanonucleation near the glass transition and links thermodynamic and kinetic anomalies when matched to water-like conditions.