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从量子比特 - 环境关联中提取信息。

Extracting information from qubit-environment correlations.

作者信息

Reina John H, Susa Cristian E, Fanchini Felipe F

机构信息

1] Departamento de Física, Universidad del Valle, A.A. 25360, Cali, Colombia [2] Centre for Bioinformatics and Photonics-CIBioFI, Calle 13 No. 100-00, Edificio 320, No. 1069, Cali, Colombia.

Departamento de Física, Faculdade de Ciências, UNESP, Bauru, SP, CEP 17033-360, Brazil.

出版信息

Sci Rep. 2014 Dec 17;4:7443. doi: 10.1038/srep07443.

Abstract

Most works on open quantum systems generally focus on the reduced physical system by tracing out the environment degrees of freedom. Here we show that the qubit distributions with the environment are essential for a thorough analysis, and demonstrate that the way that quantum correlations are distributed in a quantum register is constrained by the way in which each subsystem gets correlated with the environment. For a two-qubit system coupled to a common dissipative environment E, we show how to optimise interqubit correlations and entanglement via a quantification of the qubit-environment information flow, in a process that, perhaps surprisingly, does not rely on the knowledge of the state of the environment. To illustrate our findings, we consider an optically-driven bipartite interacting qubit AB system under the action of E. By tailoring the light-matter interaction, a relationship between the qubits early stage disentanglement and the qubit-environment entanglement distribution is found. We also show that, under suitable initial conditions, the qubits energy asymmetry allows the identification of physical scenarios whereby qubit-qubit entanglement minima coincide with the extrema of the AE and BE entanglement oscillations.

摘要

大多数关于开放量子系统的研究通常通过追踪环境自由度来聚焦于约化物理系统。在此我们表明,量子比特与环境的分布对于全面分析至关重要,并证明量子关联在量子寄存器中的分布方式受到每个子系统与环境关联方式的限制。对于一个与共同耗散环境E耦合的双量子比特系统,我们展示了如何通过对量子比特 - 环境信息流的量化来优化量子比特间的关联和纠缠,在此过程中,或许令人惊讶的是,并不依赖于对环境状态的了解。为了说明我们的发现,我们考虑在环境E作用下的光驱动二分相互作用量子比特AB系统。通过调整光与物质的相互作用,发现了量子比特早期退纠缠与量子比特 - 环境纠缠分布之间的关系。我们还表明,在合适的初始条件下,量子比特能量不对称允许识别物理场景,即量子比特 - 量子比特纠缠最小值与AE和BE纠缠振荡的极值重合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26c4/5378948/16843242ebf7/srep07443-f1.jpg

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