Branching States as The Emergent Structure of a Quantum Universe

Fuente: arXiv
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Main Authors: Touil, Akram, Anza, Fabio, Deffner, Sebastian, Crutchfield, James P.
Format: Preprint
Published: 2022
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author Touil, Akram
Anza, Fabio
Deffner, Sebastian
Crutchfield, James P.
author_facet Touil, Akram
Anza, Fabio
Deffner, Sebastian
Crutchfield, James P.
contents Quantum Darwinism builds on decoherence theory to explain the emergence of classical behavior in a fundamentally quantum universe. Within this framework we prove two crucial insights about the emergence of classical phenomenology, centered around quantum discord as the measure of quantumness of correlations. First, we show that the so-called branching structure of the joint state of the system and environment is the only one compatible with zero discord. Second, we prove that for small but nonzero discord and for good but not perfect decoherence, the structure of the globally pure state must be arbitrarily close to the branching form, with each branch exhibiting low entanglement. Our results significantly improve on previous bounds and reinforce the existing evidence that this class of branching states is the only one compatible with the emergence of classical phenomenology, as described by Quantum Darwinism.
format Preprint
id arxiv_https___arxiv_org_abs_2208_05497
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Branching States as The Emergent Structure of a Quantum Universe
Touil, Akram
Anza, Fabio
Deffner, Sebastian
Crutchfield, James P.
Quantum Physics
Statistical Mechanics
Quantum Darwinism builds on decoherence theory to explain the emergence of classical behavior in a fundamentally quantum universe. Within this framework we prove two crucial insights about the emergence of classical phenomenology, centered around quantum discord as the measure of quantumness of correlations. First, we show that the so-called branching structure of the joint state of the system and environment is the only one compatible with zero discord. Second, we prove that for small but nonzero discord and for good but not perfect decoherence, the structure of the globally pure state must be arbitrarily close to the branching form, with each branch exhibiting low entanglement. Our results significantly improve on previous bounds and reinforce the existing evidence that this class of branching states is the only one compatible with the emergence of classical phenomenology, as described by Quantum Darwinism.
title Branching States as The Emergent Structure of a Quantum Universe
topic Quantum Physics
Statistical Mechanics
url https://arxiv.org/abs/2208.05497