Identifying quantum many-body integrability and chaos using eigenstates trace distances
arXiv:2301.13218 · doi:10.1103/PhysRevLett.131.216701
Abstract
While the concepts of quantum many-body integrability and chaos are of fundamental importance for the understanding of quantum matter, their precise definition has so far remained an open question. In this work, we introduce an alternative indicator for quantum many-body integrability and chaos, which is based on the statistics of eigenstates by means of nearest-neighbor subsystem trace distances. We show that this provides us with a faithful classification through extensive numerical simulations for a large variety of paradigmatic model systems including random matrix theories, free fermions, Bethe-ansatz solvable systems, and models of many-body localization. While existing indicators, such as those obtained from level-spacing statistics, have already been utilized with great success, they also face limitations. This concerns for instance the quantum many-body kicked top, which is exactly solvable but classified as chaotic in certain regimes based on the level-spacing statistics, while our introduced indicator signals the expected quantum many-body integrability. We discuss the universal behaviors we observe for the nearest-neighbor trace distances and point out that our indicator might be useful also in other contexts such as for the many-body localization transition.
7+6 pages, 3+6 Figures
References in corpus (12)
- Thermalization and its mechanism for generic isolated quantum systems
- The distribution of the ratio of consecutive level spacings in random matrix ensembles
- Many body localization in Heisenberg XXZ magnet in a random field
- Phenomenology of fully many-body-localized systems
- A Sharp Fannes-type Inequality for the von Neumann Entropy
- Entanglement Entropy of Eigenstates of Quantum Chaotic Hamiltonians
- Chaos, entanglement and decoherence in the quantum kicked top
- Subsystem Trace Distance in Quantum Field Theory
- Lattice Bisognano-Wichmann modular Hamiltonian in critical quantum spin chains
- Quantum signatures of chaos, thermalization and tunneling in the exactly solvable few body kicked top
- Subsystem distances between quasiparticle excited states
- Subsystem Trace-Distances of Two Random States