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Random Matrix Ensembles For Many-Body Quantum Systems

机译:许多身体量子系统的随机矩阵集合

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Classical random matrix ensembles were originally introduced in physics to approximate quantum many-particle nuclear interactions. However, there exists a plethora of quantum systems whose dynamics is explained in terms of few-particle (predominantly two-particle) interactions. The random matrix models incorporating the few-particle nature of interactions are known as embedded random matrix ensembles. In the present paper, we provide a brief overview of these two ensembles and illustrate how the embedded ensembles can be successfully used to study decoherence of a qubit interacting with an environment, both for fermionic and bosonic embedded ensembles. Numerical calculations show the dependence of decoherence on the nature of the environment.
机译:经典随机矩阵集合最初以物理学引入,以近似量子多粒子核相互作用。然而,存在一种多种量子系统,其动力学在少量颗粒(主要是双粒子)相互作用方面进行说明。包含相互作用的几个粒子性质的随机矩阵模型被称为嵌入式随机矩阵集合。在本文中,我们简要概述了这两个合奏,并说明了嵌入式的集合如何成功地用于研究与环境的环境交互的Qubit交互的变阻器,无论是对Fermionic和Bosonic嵌入的集合。数值计算展示了破灭对环境性质的依赖。

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