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光子晶格中非线性Jaynes-Cummings模型和拉比模型的经典模拟。

A classical simulation of nonlinear Jaynes-Cummings and Rabi models in photonic lattices.

作者信息

Rodríguez-Lara B M, Soto-Eguibar Francisco, Cárdenas Alejandro Zárate, Moya-Cessa H M

机构信息

Instituto Nacional de Astrofísica, Óptica y Electrónica, Calle Luis Enrique Erro No1, Sta Ma Tonantzintla, Pue CP 72840, México.

出版信息

Opt Express. 2013 May 20;21(10):12888-98. doi: 10.1364/OE.21.012888.

DOI:10.1364/OE.21.012888
PMID:23736508
Abstract

The interaction of a two-level atom with a single-mode quantized field is one of the simplest models in quantum optics. Under the rotating wave approximation, it is known as the Jaynes-Cummings model and without it as the Rabi model. Real-world realizations of the Jaynes-Cummings model include cavity, ion trap and circuit quantum electrodynamics. The Rabi model can be realized in circuit quantum electrodynamics. As soon as nonlinear couplings are introduced, feasible experimental realizations in quantum systems are drastically reduced. We propose a set of two photonic lattices that classically simulates the interaction of a single two-level system with a quantized field under field nonlinearities and nonlinear couplings as long as the quantum optics model conserves parity. We describe how to reconstruct the mean value of quantum optics measurements, such as photon number and atomic energy excitation, from the intensity and from the field, such as von Neumann entropy and fidelity, at the output of the photonic lattices. We discuss how typical initial states involving coherent or displaced Fock fields can be engineered from recently discussed Glauber-Fock lattices. As an example, the Buck-Sukumar model, where the coupling depends on the intensity of the field, is classically simulated for separable and entangled initial states.

摘要

两能级原子与单模量子化场的相互作用是量子光学中最简单的模型之一。在旋转波近似下,它被称为 Jaynes-Cummings 模型,没有旋转波近似时则称为 Rabi 模型。Jaynes-Cummings 模型在现实世界中的实现包括腔量子电动力学、离子阱和电路量子电动力学。Rabi 模型可以在电路量子电动力学中实现。一旦引入非线性耦合,量子系统中可行的实验实现就会大幅减少。我们提出了一组双光子晶格,只要量子光学模型保持宇称,它们就能在经典情况下模拟单个两能级系统在场非线性和非线性耦合下与量子化场的相互作用。我们描述了如何从光子晶格输出处的强度以及场量(如冯·诺依曼熵和保真度)重建量子光学测量的平均值,如光子数和原子能量激发。我们讨论了如何从最近讨论的 Glauber-Fock 晶格设计出涉及相干或位移福克场的典型初始态。作为一个例子,我们对耦合依赖于场强的 Buck-Sukumar 模型的可分离和纠缠初始态进行了经典模拟。

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引用本文的文献

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