Quantum jumps in driven-dissipative disordered many-body systems

Fuente: arXiv
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Main Authors: Gupta, Sparsh, Yadalam, Hari Kumar, Kulkarni, Manas, Aron, Camille
Format: Preprint
Published: 2023
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author Gupta, Sparsh
Yadalam, Hari Kumar
Kulkarni, Manas
Aron, Camille
author_facet Gupta, Sparsh
Yadalam, Hari Kumar
Kulkarni, Manas
Aron, Camille
contents We discuss how quantum jumps affect localized regimes in driven-dissipative disordered many-body systems featuring a localization transition. We introduce a deformation of the Lindblad master equation that interpolates between the standard Lindblad and the no-jump non-Hermitian dynamics of open quantum systems. As a platform, we use a disordered chain of hard-core bosons with nearest-neighbor interactions and subject to incoherent drive and dissipation at alternate sites. We probe both the statistics of complex eigenvalues of the deformed Liouvillian and dynamical observables of physical relevance. We show that reducing the number of quantum jumps, achievable through realistic postselection protocols, can promote the emergence of the localized phase. Our findings are based on exact diagonalization and time-dependent matrix-product states techniques.
format Preprint
id arxiv_https___arxiv_org_abs_2312_17311
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Quantum jumps in driven-dissipative disordered many-body systems
Gupta, Sparsh
Yadalam, Hari Kumar
Kulkarni, Manas
Aron, Camille
Quantum Physics
Disordered Systems and Neural Networks
Statistical Mechanics
We discuss how quantum jumps affect localized regimes in driven-dissipative disordered many-body systems featuring a localization transition. We introduce a deformation of the Lindblad master equation that interpolates between the standard Lindblad and the no-jump non-Hermitian dynamics of open quantum systems. As a platform, we use a disordered chain of hard-core bosons with nearest-neighbor interactions and subject to incoherent drive and dissipation at alternate sites. We probe both the statistics of complex eigenvalues of the deformed Liouvillian and dynamical observables of physical relevance. We show that reducing the number of quantum jumps, achievable through realistic postselection protocols, can promote the emergence of the localized phase. Our findings are based on exact diagonalization and time-dependent matrix-product states techniques.
title Quantum jumps in driven-dissipative disordered many-body systems
topic Quantum Physics
Disordered Systems and Neural Networks
Statistical Mechanics
url https://arxiv.org/abs/2312.17311