Hybridized topological zero modes cause ac conductivity to scale as log ω at the critical delocalization point in the disordered SSH chain due to stretched-exponential wavefunction decay.
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Thermodynamic fluctuations in a Griffiths-like region near a liquid-vapor-glass frustration state explain the Stokes-Einstein breakdown in supercooled metallic glass-forming liquids.
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Quantum Critical Dynamics Induced by Topological Zero Modes
Hybridized topological zero modes cause ac conductivity to scale as log ω at the critical delocalization point in the disordered SSH chain due to stretched-exponential wavefunction decay.
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Griffiths-like region explains the dynamic anomaly in metallic glass-forming liquids
Thermodynamic fluctuations in a Griffiths-like region near a liquid-vapor-glass frustration state explain the Stokes-Einstein breakdown in supercooled metallic glass-forming liquids.