Thermalization and Possible Signatures of Quantum Chaos in Complex Crystalline Materials
arXiv:2001.03805 · doi:10.1073/pnas.1910131116
Abstract
Analyses of thermal diffusivity data on complex insulators and on strongly correlated electron systems hosted in similar complex crystal structures suggest that quantum chaos is a good description for thermalization processes in these systems, particularly in the high temperature regime where the many phonon bands and their interactions dominate the thermal transport. Here we observe that for these systems diffusive thermal transport is controlled by a universal Planckian time scale , and a unique velocity . Specifically, for complex insulators, and in the presence of strongly correlated itinerant electrons ( and are the phonons and electrons velocities respectively). For the complex correlated electron systems we further show that charge diffusivity, while also reaching the Planckian relaxation bound, is largely dominated by the Fermi velocity of the electrons, hence suggesting that it is only the thermal (energy) diffusivity that describes chaos diffusivity.
References in corpus (6)
- Theory of universal incoherent metallic transport
- Microscopic model of quantum butterfly effect: out-of-time-order correlators and traveling combustion waves
- Quantum chaos on a critical Fermi surface
- Indirect searches for sterile neutrinos at a high-luminosity Z-factory
- An upper bound on transport
- A lower bound to the thermal diffusivity of insulators
Cited by in corpus (14)
- Sachdev-Ye-Kitaev Models and Beyond: A Window into Non-Fermi Liquids
- Planckian Dissipation in Metals
- Holographic Axion Model: a simple gravitational tool for quantum matter
- Transport properties of strongly coupled electron-phonon liquids
- Universal Bounds on Transport in Holographic Systems with Broken Translations
- On the universality of AdS diffusion bounds and the breakdown of linearized hydrodynamics
- Exact Universal Chaos, Speed Limit, Acceleration, Planckian Transport Coefficient, "Collapse" to equilibrium, and Other Bounds in Thermal Quantum Systems
- Strongly coupled quantum phonon fluid in a solvable model
- Strongly coupled phonon fluid and Goldstone modes in an anharmonic quantum solid: transport and chaos
- A Bound on Thermalization from Diffusive Fluctuations
- A classical model for sub-Planckian thermal diffusivity in complex crystals
- The Lorenz ratio as a guide to scattering contributions to Planckian transport
- Quantum many-body physics from a gravitational lens
- Phonon Induced Energy Relaxation in Quantum Critical Metals