Symmetrizing quantum dynamics beyond gossip-type algorithms

Fuente: arXiv
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Main Author: Ticozzi, Francesco
Format: Preprint
Published: 2015
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author Ticozzi, Francesco
author_facet Ticozzi, Francesco
contents Recently, consensus-type problems have been formulated in the quantum domain. Obtaining average quantum consensus consists in the dynamical symmetrization of a multipartite quantum system while preserving the expectation of a given global observable. In this paper, two improved ways of obtaining consensus via dissipative engineering are introduced, which employ on quasi local preparation of mixtures of symmetric pure states, and show better performance in terms of purity dynamics with respect to existing algorithms. In addition, the first method can be used in combination with simple control resources in order to engineer pure Dicke states, while the second method guarantees a stronger type of consensus, namely single-measurement consensus. This implies that outcomes of local measurements on different subsystems are perfectly correlated when consensus is achieved. Both dynamics can be randomized and are suitable for feedback implementation.
format Preprint
id arxiv_https___arxiv_org_abs_1509_01621
institution arXiv
publishDate 2015
record_format arxiv
spellingShingle Symmetrizing quantum dynamics beyond gossip-type algorithms
Ticozzi, Francesco
Quantum Physics
Optimization and Control
Recently, consensus-type problems have been formulated in the quantum domain. Obtaining average quantum consensus consists in the dynamical symmetrization of a multipartite quantum system while preserving the expectation of a given global observable. In this paper, two improved ways of obtaining consensus via dissipative engineering are introduced, which employ on quasi local preparation of mixtures of symmetric pure states, and show better performance in terms of purity dynamics with respect to existing algorithms. In addition, the first method can be used in combination with simple control resources in order to engineer pure Dicke states, while the second method guarantees a stronger type of consensus, namely single-measurement consensus. This implies that outcomes of local measurements on different subsystems are perfectly correlated when consensus is achieved. Both dynamics can be randomized and are suitable for feedback implementation.
title Symmetrizing quantum dynamics beyond gossip-type algorithms
topic Quantum Physics
Optimization and Control
url https://arxiv.org/abs/1509.01621