Entanglement and Purity in Open Systems: A Breakdown of the Lindblad Approach

Fuente: arXiv
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Main Authors: Serao, Raoul, Quaranta, Aniello, Capolupo, Antonio, Franchini, Fabio, Giampaolo, Salvatore Marco
Format: Preprint
Published: 2025
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author Serao, Raoul
Quaranta, Aniello
Capolupo, Antonio
Franchini, Fabio
Giampaolo, Salvatore Marco
author_facet Serao, Raoul
Quaranta, Aniello
Capolupo, Antonio
Franchini, Fabio
Giampaolo, Salvatore Marco
contents We examine the effectiveness of Lindblad master equation in capturing the short-time dynamics of entanglement and purity in open quantum systems. Focusing on two interacting two-level systems interacting with a larger environment, we compare the Lindbladian approach to a full microscopic treatment. While the latter shows entanglement growth and a quadratic decay of purity, the Lindbladian method predicts a linear purity decay and can entirely suppress entanglement when the dissipative coupling exceeds the interaction strength. Introducing a time-dependent Lindbladian improves some predictions but causes inconsistencies in other observables. Our results highlight the limitations of effective models and the need for caution when applying them to describe subtle quantum behaviors.
format Preprint
id arxiv_https___arxiv_org_abs_2507_10668
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Entanglement and Purity in Open Systems: A Breakdown of the Lindblad Approach
Serao, Raoul
Quaranta, Aniello
Capolupo, Antonio
Franchini, Fabio
Giampaolo, Salvatore Marco
Quantum Physics
Quantum Gases
High Energy Physics - Theory
We examine the effectiveness of Lindblad master equation in capturing the short-time dynamics of entanglement and purity in open quantum systems. Focusing on two interacting two-level systems interacting with a larger environment, we compare the Lindbladian approach to a full microscopic treatment. While the latter shows entanglement growth and a quadratic decay of purity, the Lindbladian method predicts a linear purity decay and can entirely suppress entanglement when the dissipative coupling exceeds the interaction strength. Introducing a time-dependent Lindbladian improves some predictions but causes inconsistencies in other observables. Our results highlight the limitations of effective models and the need for caution when applying them to describe subtle quantum behaviors.
title Entanglement and Purity in Open Systems: A Breakdown of the Lindblad Approach
topic Quantum Physics
Quantum Gases
High Energy Physics - Theory
url https://arxiv.org/abs/2507.10668