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Quantum paraelectricity and structural phase transitions in strontium titanate beyond density-functional theory

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arxiv 2211.09616 v2 pith:2TW7IITQ submitted 2022-11-17 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords quantumanharmonicbeyonddensity-functionalphasetheoryapproachapproximation
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We demonstrate an approach for calculating temperature-dependent quantum and anharmonic effects with beyond density-functional theory accuracy. By combining machine-learned potentials and the stochastic self-consistent harmonic approximation, we investigate the cubic to tetragonal transition in strontium titanate and show that the paraelectric phase is stabilized by anharmonic quantum fluctuations. We find that a quantitative understanding of the quantum paraelectric behavior requires a higher-level treatment of electronic correlation effects via the random phase approximation. This approach enables detailed studies of emergent properties in strongly anharmonic materials beyond density-functional theory.

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  1. Two-phonon pairing and superconductivity in $SrTiO_3$

    cond-mat.supr-con 2026-08 conditional novelty 6.0 of 10

    The two-phonon pairing mechanism in SrTiO3 gives a small, monotonically doping-dependent Tc because the attraction is controlled by high-energy phonons, not the soft mode.

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