Separability Lindblad equation for dynamical open-system entanglement

Fuente: arXiv
Guardado en:
Detalles Bibliográficos
Autores principales: Pinske, Julien, Ares, Laura, Hinrichs, Benjamin, Kolb, Martin, Sperling, Jan
Formato: Preprint
Publicado: 2024
Materias:
Acceso en línea:
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
_version_ 1866908782769995776
author Pinske, Julien
Ares, Laura
Hinrichs, Benjamin
Kolb, Martin
Sperling, Jan
author_facet Pinske, Julien
Ares, Laura
Hinrichs, Benjamin
Kolb, Martin
Sperling, Jan
contents Providing entanglement for the design of quantum technologies in the presence of noise constitutes today's main challenge in quantum information science. A framework is required that assesses the build-up of entanglement in realistic settings. In this work, we put forth a new class of nonlinear quantum master equations in Lindblad form that unambiguously identify dynamical entanglement in open quantum systems via deviations from a separable evolution. This separability Lindblad equation restricts quantum trajectories to classically correlated states only. Unlike many conventional approaches, here the entangling capabilities of a process are not characterized by input-output relations, but separability is imposed at each instant of time. We solve these equations for crucial examples, thereby quantifying the dynamical impact of entanglement in non-equilibrium scenarios. Our results allow to benchmark the engineering of entangled states through dissipation. The separability Lindblad equation provides a unique path to characterizing quantum correlations caused by arbitrary system-bath interactions, specifically tailored for the noisy intermediate-scale quantum era.
format Preprint
id arxiv_https___arxiv_org_abs_2412_08724
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Separability Lindblad equation for dynamical open-system entanglement
Pinske, Julien
Ares, Laura
Hinrichs, Benjamin
Kolb, Martin
Sperling, Jan
Quantum Physics
Providing entanglement for the design of quantum technologies in the presence of noise constitutes today's main challenge in quantum information science. A framework is required that assesses the build-up of entanglement in realistic settings. In this work, we put forth a new class of nonlinear quantum master equations in Lindblad form that unambiguously identify dynamical entanglement in open quantum systems via deviations from a separable evolution. This separability Lindblad equation restricts quantum trajectories to classically correlated states only. Unlike many conventional approaches, here the entangling capabilities of a process are not characterized by input-output relations, but separability is imposed at each instant of time. We solve these equations for crucial examples, thereby quantifying the dynamical impact of entanglement in non-equilibrium scenarios. Our results allow to benchmark the engineering of entangled states through dissipation. The separability Lindblad equation provides a unique path to characterizing quantum correlations caused by arbitrary system-bath interactions, specifically tailored for the noisy intermediate-scale quantum era.
title Separability Lindblad equation for dynamical open-system entanglement
topic Quantum Physics
url https://arxiv.org/abs/2412.08724