Exploring many-body localization in quantum systems coupled to an environment via Wegner-Wilson flows
DOI10.1016/j.nuclphysb.2019.114886zbMath1479.82038arXiv1902.11295OpenAlexW2996527396WikidataQ126543628 ScholiaQ126543628MaRDI QIDQ2230148
Rahul Nandkishore, Jamir Marino, Shane P. Kelly
Publication date: 17 September 2021
Published in: Nuclear Physics. B (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1902.11295
Statistical mechanics of random media, disordered materials (including liquid crystals and spin glasses) (82D30) Dynamic lattice systems (kinetic Ising, etc.) and systems on graphs in time-dependent statistical mechanics (82C20) Many-body theory; quantum Hall effect (81V70) Dynamics of disordered systems (random Ising systems, etc.) in time-dependent statistical mechanics (82C44) Fermionic systems in quantum theory (81V74)
Related Items (1)
Cites Work
- Integrals of motion in the many-body localized phase
- Flow equations and the strong-coupling expansion for the Hubbard model
- Metal--insulator transition in a weakly interacting many-electron system with localized single-particle states
- Exploring the many-body localization transition in two dimensions
- Observation of many-body localization of interacting fermions in a quasirandom optical lattice
- Flow towards diagonalization for many-body-localization models: adaptation of the Toda matrix differential flow to random quantum spin chains
- Quench dynamics and relaxation in isolated integrable quantum spin chains
- Quantum quenches in 1 + 1 dimensional conformal field theories
- Flow‐equations for Hamiltonians
- Thermal inclusions: how one spin can destroy a many-body localized phase
This page was built for publication: Exploring many-body localization in quantum systems coupled to an environment via Wegner-Wilson flows