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固态量子电池的高功率集体充电

High-Power Collective Charging of a Solid-State Quantum Battery.

作者信息

Ferraro Dario, Campisi Michele, Andolina Gian Marcello, Pellegrini Vittorio, Polini Marco

机构信息

Istituto Italiano di Tecnologia, Graphene Labs, Via Morego 30, I-16163 Genova, Italy.

NEST, Scuola Normale Superiore, I-56126 Pisa, Italy.

出版信息

Phys Rev Lett. 2018 Mar 16;120(11):117702. doi: 10.1103/PhysRevLett.120.117702.

Abstract

Quantum information theorems state that it is possible to exploit collective quantum resources to greatly enhance the charging power of quantum batteries (QBs) made of many identical elementary units. We here present and solve a model of a QB that can be engineered in solid-state architectures. It consists of N two-level systems coupled to a single photonic mode in a cavity. We contrast this collective model ("Dicke QB"), whereby entanglement is genuinely created by the common photonic mode, to the one in which each two-level system is coupled to its own separate cavity mode ("Rabi QB"). By employing exact diagonalization, we demonstrate the emergence of a quantum advantage in the charging power of Dicke QBs, which scales like sqrt[N] for N≫1.

摘要

量子信息定理表明,利用集体量子资源能够显著提高由许多相同基本单元构成的量子电池(QB)的充电功率。我们在此提出并求解了一个可在固态架构中构建的量子电池模型。它由N个两能级系统与腔内的单个光子模式耦合组成。我们将这种集体模型(“迪克量子电池”),即通过共同的光子模式真正产生纠缠的模型,与每个两能级系统耦合到其自身单独的腔模式的模型(“拉比量子电池”)进行对比。通过采用精确对角化,我们证明了迪克量子电池在充电功率方面出现了量子优势,对于N≫1,其按sqrt[N]缩放。

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