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单原子-腔系统中相位控制的可调谐非常规光子阻塞

Phase-Controlled Tunable Unconventional Photon Blockade in a Single-Atom-Cavity System.

作者信息

Li Hong, Liu Ming, Yang Feng, Zhang Siqi, Ruan Shengping

机构信息

State Key Laboratory on Integrated Optoelectronics and College of Electronic Science and Engineering, Jilin University, Changchun 130012, China.

Institute for Interdisciplinary Quantum Information Technology, Jilin Engineering Normal University, Changchun 130052, China.

出版信息

Micromachines (Basel). 2023 Nov 19;14(11):2123. doi: 10.3390/mi14112123.

Abstract

In the past few years, cavity optomechanical systems have received extensive attention and research and have achieved rapid development both theoretically and experimentally. The systems play an important role in many fields, such as quantum information processing, optomechanical storage, high-precision measurement, macroscopic entanglement, ultrasensitive sensors and so on. Photon manipulation has always been one of the key tasks in quantum information science and technology. Photon blockade is an important way to realize single photon sources and plays an important role in the field of quantum information. Due to the nonlinear coupling of the optical force system, the energy level is not harmonic, resulting in a photon blockade effect. In this paper, we study the phase-controlled tunable unconventional photon blockade in a single-atom-cavity system, and the second-order nonlinear crystals are attached to the cavity. The cavity interacts with squeezed light, which results in a nonlinear process. The system is driven by a complex pulsed laser, and the strength of the coherent driving contains the phase. We want to study the effect of squeezed light and phase. We use the second-order correlation function to numerically and theoretically analyze the photon blockade effect. We show that quantum interference of two-photon excitation between three different transition pathways can cause a photon blockade effect. When there is no squeezed light, the interference pathways becomes two, but there are still photon blockade effects. We explore the influence of the tunable phase and second-order nonlinear strength on the photon blockade effect. We calculate the correlation function and compare the numerical results with the analytical results under certain parameters and find that the agreement is better.

摘要

在过去几年中,腔光力学系统受到了广泛关注和研究,并在理论和实验上都取得了快速发展。该系统在许多领域发挥着重要作用,如量子信息处理、光机械存储、高精度测量、宏观纠缠、超灵敏传感器等。光子操控一直是量子信息科学技术中的关键任务之一。光子阻塞是实现单光子源的重要途径,在量子信息领域发挥着重要作用。由于光力系统的非线性耦合,能级是非简谐的,从而产生光子阻塞效应。在本文中,我们研究了单原子 - 腔系统中相位控制的可调谐非常规光子阻塞,并且在腔上附着了二阶非线性晶体。腔与压缩光相互作用,这导致了一个非线性过程。该系统由一个复脉冲激光驱动,相干驱动的强度包含相位。我们想要研究压缩光和相位的影响。我们使用二阶关联函数对光子阻塞效应进行数值和理论分析。我们表明,三种不同跃迁路径之间的双光子激发的量子干涉可以导致光子阻塞效应。当没有压缩光时,干涉路径变为两条,但仍然存在光子阻塞效应。我们探索了可调谐相位和二阶非线性强度对光子阻塞效应的影响。我们计算了关联函数,并在某些参数下将数值结果与解析结果进行比较,发现一致性较好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e606/10673575/e02a8ab3c948/micromachines-14-02123-g001.jpg

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本文引用的文献

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Fundam Res. 2022 Jul 30;3(1):30-36. doi: 10.1016/j.fmre.2022.07.009. eCollection 2023 Jan.
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