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Autori principali: Wang, Yu-Xin, Seif, Alireza, Clerk, Aashish A.
Natura: Preprint
Pubblicazione: 2023
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Accesso online:https://arxiv.org/abs/2310.01338
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author Wang, Yu-Xin
Seif, Alireza
Clerk, Aashish A.
author_facet Wang, Yu-Xin
Seif, Alireza
Clerk, Aashish A.
contents The rich entanglement dynamics and transitions exhibited by monitored quantum systems typically only exist in the conditional state, making observation extremely difficult. In this work we construct a general recipe for mimicking the conditional entanglement dynamics of a monitored system in a corresponding measurement-free dissipative system involving directional interactions between the original system and a set of auxiliary register modes. This mirror setup autonomously implements a measurement-feedforward dynamics that effectively retains a coarse-grained measurement record. We illustrate our ideas in a bosonic system featuring a competition between entangling measurements and local unitary dynamics, and also discuss extensions to qubit systems and truly many-body systems.
format Preprint
id arxiv_https___arxiv_org_abs_2310_01338
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Uncovering measurement-induced entanglement via directional adaptive dynamics and incomplete information
Wang, Yu-Xin
Seif, Alireza
Clerk, Aashish A.
Quantum Physics
Mesoscale and Nanoscale Physics
The rich entanglement dynamics and transitions exhibited by monitored quantum systems typically only exist in the conditional state, making observation extremely difficult. In this work we construct a general recipe for mimicking the conditional entanglement dynamics of a monitored system in a corresponding measurement-free dissipative system involving directional interactions between the original system and a set of auxiliary register modes. This mirror setup autonomously implements a measurement-feedforward dynamics that effectively retains a coarse-grained measurement record. We illustrate our ideas in a bosonic system featuring a competition between entangling measurements and local unitary dynamics, and also discuss extensions to qubit systems and truly many-body systems.
title Uncovering measurement-induced entanglement via directional adaptive dynamics and incomplete information
topic Quantum Physics
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2310.01338