Absence of ergodicity without quenched disorder: From quantum disentangled liquids to many-body localization

Physical Review Letters, 2017 - APS
We study the time evolution after a quantum quench in a family of models whose degrees of
freedom are fermions coupled to spins, where quenched disorder appears neither in the …

[引用][C] Absence of Ergodicity without Quenched Disorder: From Quantum Disentangled Liquids to Many-Body Localization

A Smith, J Knolle, R Moessner, DL Kovrizhin - Physical Review Letters, 2017 - cir.nii.ac.jp
Absence of Ergodicity without Quenched Disorder: From Quantum Disentangled Liquids to
Many-Body Localization | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ] …

[引用][C] Absence of Ergodicity without Quenched Disorder: From Quantum Disentangled Liquids to Many-Body Localization

A Smith, J Knolle, R Moessner, DL Kovrizhin - Physical Review Letters, 2017 - elibrary.ru
We would like to thank Thomas Veness for his suggestions on the manuscript. AS
acknowledges EPSRC for studentship funding under Grant No. EP/M508007/1. JK is …

Absence of Ergodicity without Quenched Disorder: From Quantum Disentangled Liquids to Many-Body Localization

A Smith, J Knolle, R Moessner, DL Kovrizhin - Physical Review Letters, 2017 - pure.mpg.de
We study the time evolution after a quantum quench in a family of models whose degrees of
freedom are fermions coupled to spins, where quenched disorder appears neither in the …

Absence of Ergodicity without Quenched Disorder: from Quantum Disentangled Liquids to Many-Body Localization

A Smith, J Knolle, R Moessner, DL Kovrizhin - arXiv preprint arXiv …, 2017 - arxiv.org
We study the time evolution after a quantum quench in a family of models whose degrees of
freedom are fermions coupled to spins, where quenched disorder appears neither in the …

Absence of Ergodicity without Quenched Disorder: From Quantum Disentangled Liquids to Many-Body Localization

A Smith, J Knolle, R Moessner, DL Kovrizhin - 2017 - repository.cam.ac.uk
We study the time evolution after a quantum quench in a family of models whose degrees of
freedom are fermions coupled to spins, where quenched disorder appears neither in the …

Absence of Ergodicity without Quenched Disorder: From Quantum Disentangled Liquids to Many-Body Localization

A Smith, J Knolle, R Moessner… - Physical Review …, 2017 - ui.adsabs.harvard.edu
We study the time evolution after a quantum quench in a family of models whose degrees of
freedom are fermions coupled to spins, where quenched disorder appears neither in the …

Absence of Ergodicity without Quenched Disorder: From Quantum Disentangled Liquids to Many-Body Localization

A Smith, J Knolle, R Moessner… - Physical review …, 2017 - pubmed.ncbi.nlm.nih.gov
We study the time evolution after a quantum quench in a family of models whose degrees of
freedom are fermions coupled to spins, where quenched disorder appears neither in the …

Absence of ergodicity without quenched disorder: From quantum disentangled liquids to many-body localization

A Smith, J Knolle, R Moessner, D Kovrizhin - Physical Review Letters, 2017 - ora.ox.ac.uk
We study the time evolution after a quantum quench in a family of models whose degrees of
freedom are fermions coupled to spins, where quenched disorder appears neither in the …

Absence of Ergodicity without Quenched Disorder: From Quantum Disentangled Liquids to Many-Body Localization.

A Smith, J Knolle, R Moessner… - Physical Review Letters, 2017 - europepmc.org
We study the time evolution after a quantum quench in a family of models whose degrees of
freedom are fermions coupled to spins, where quenched disorder appears neither in the …