Synchronization in a dissipative quantum many-body system

Fuente: arXiv
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Main Authors: Çakmak, B., Sümer, K., Campbell, S., Karpat, G.
Format: Preprint
Published: 2026
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author Çakmak, B.
Sümer, K.
Campbell, S.
Karpat, G.
author_facet Çakmak, B.
Sümer, K.
Campbell, S.
Karpat, G.
contents We study synchronization in the XX qubit chain subject to local or multi-local amplitude-damping noise. Analyzing the decoherence-free subspace (DFS) structure of the model, we show that it is completely determined by a simple number-theoretic function involving the noise sites and the chain length. We derive a closed-form expression for local qubit observables restricted to the DFS and prove that stable synchronization of the edge qubits for arbitrary initial states occurs \textit{if and only if} the DFS supports exactly one single-excitation eigenstate. We further show that this same condition also guarantees constant asymptotic entanglement between the edge qubits, so that generic stable synchronization and constant asymptotic entanglement necessarily coexist. By contrast, when the DFS supports multiple single-excitation eigenstates, synchronization becomes initial state dependent and may be entirely absent, even though stable oscillatory entanglement can persist indefinitely.
format Preprint
id arxiv_https___arxiv_org_abs_2604_18707
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Synchronization in a dissipative quantum many-body system
Çakmak, B.
Sümer, K.
Campbell, S.
Karpat, G.
Quantum Physics
Statistical Mechanics
We study synchronization in the XX qubit chain subject to local or multi-local amplitude-damping noise. Analyzing the decoherence-free subspace (DFS) structure of the model, we show that it is completely determined by a simple number-theoretic function involving the noise sites and the chain length. We derive a closed-form expression for local qubit observables restricted to the DFS and prove that stable synchronization of the edge qubits for arbitrary initial states occurs \textit{if and only if} the DFS supports exactly one single-excitation eigenstate. We further show that this same condition also guarantees constant asymptotic entanglement between the edge qubits, so that generic stable synchronization and constant asymptotic entanglement necessarily coexist. By contrast, when the DFS supports multiple single-excitation eigenstates, synchronization becomes initial state dependent and may be entirely absent, even though stable oscillatory entanglement can persist indefinitely.
title Synchronization in a dissipative quantum many-body system
topic Quantum Physics
Statistical Mechanics
url https://arxiv.org/abs/2604.18707