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Local micromechanics in a mean-field model of glasses reveal key properties of its non-equilibrium RSB phase

Semiconductors

Summary

arXiv:2607.23603v1 Announce Type: cross Abstract: A recently formulated mean-field model of glasses features an equilibrium, zero-temperature Replica-Symmetry-Breaking (RSB) transition in some parameter range. In this range, the model's solution in the Replica-Symmetric phase is expressed in terms of an effective, self-consistent random potential for uncoupled degree of freedoms, where the transition to the RSB phase is characterized by the emergence of spectral-edge localized modes and a pseudogapped quartic vibrational spectrum, resulting in a finite spin-glass susceptibility. These properties are preserved in numerical solutions of the model under non-equilibrium conditions, i.e., upon an instantaneous quench.

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Key Facts

  • SectorSemiconductors
  • Market
  • ImpactLow (42/100)
  • SignalResearch

Original Sources

arXiv Condensed Matter ↗ https://arxiv.org/abs/2607.23603

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