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基于碰撞模型的一维原子封闭系统解

Closed-System Solution of the 1D Atom from Collision Model.

作者信息

Maffei Maria, Camati Patrice A, Auffèves Alexia

机构信息

CNRS, Grenoble INP, Institut Néel, Université Grenoble Alpes, 38000 Grenoble, France.

出版信息

Entropy (Basel). 2022 Jan 19;24(2):151. doi: 10.3390/e24020151.

Abstract

Obtaining the total wavefunction evolution of interacting quantum systems provides access to important properties, such as entanglement, shedding light on fundamental aspects, e.g., quantum energetics and thermodynamics, and guiding towards possible application in the fields of quantum computation and communication. We consider a two-level atom (qubit) coupled to the continuum of travelling modes of a field confined in a one-dimensional chiral waveguide. Originally, we treated the light-matter ensemble as a closed, isolated system. We solve its dynamics using a collision model where individual temporal modes of the field locally interact with the qubit in a sequential fashion. This approach allows us to obtain the total wavefunction of the qubit-field system, at any time, when the field starts in a coherent or a single-photon state. Our method is general and can be applied to other initial field states.

摘要

获取相互作用量子系统的总波函数演化,能够揭示重要性质,如纠缠,从而阐明量子能量学和热力学等基本方面,并为量子计算和通信领域的潜在应用提供指导。我们考虑一个两能级原子(量子比特)与限制在一维手性波导中的场的连续传播模式相耦合。最初,我们将光与物质的整体视为一个封闭的孤立系统。我们使用一种碰撞模型来求解其动力学,在该模型中,场的各个时间模式以顺序方式与量子比特进行局部相互作用。这种方法使我们能够在任何时刻,当场初始处于相干态或单光子态时,获得量子比特 - 场系统的总波函数。我们的方法具有通用性,可应用于其他初始场态。

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