Hong–Ou–Mandel interferometry with cavity QED-based single-photon sources: a quantum jump analysis

IF 1.9 4区 物理与天体物理 Q3 OPTICS
Alexia Dudones, Charles McCollum, Imran M. Mirza
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Abstract

We present a quantum jump/trajectory analysis of the two-photon interference phenomenon in the context of the Hong–Ou–Mandel (HOM) effect. In particular, we consider the standard setup of the HOM effect, which consists of two-photon sources firing single photons from opposite sides of a 50/50 beam splitter and two perfect detectors placed at the output ports to record photodetection events. For single-photon sources, we consider two special cases: (1) two excited two-level atoms and (2) two atom–cavity setups with initially present single photons in both cavities. For both cases, we report analytic results as well as quantum jump-based Monte Carlo simulations to demonstrate the signatures of these single-photon sources on the HOM effect under different working conditions (e.g., strong- and weak-coupling regimes of cavity quantum electrodynamics). The HOM effect offers applications in the areas of linear optics quantum computing, as well as in protocols that test the indistinguishability of single-photon sources.
基于腔qed的单光子源的Hong-Ou-Mandel干涉测量:量子跃迁分析
我们提出了在Hong-Ou-Mandel (HOM)效应背景下双光子干涉现象的量子跳变/轨迹分析。特别地,我们考虑了HOM效应的标准设置,它由两个光子源从一个50/50分束器的两侧发射单光子和两个放置在输出端口的完美探测器组成,以记录光探测事件。对于单光子源,我们考虑两种特殊情况:(1)两个激发的两能级原子和(2)两个原子腔设置,两个腔中最初都存在单个光子。对于这两种情况,我们报告了分析结果以及基于量子跳变的蒙特卡罗模拟,以证明这些单光子源在不同工作条件下(例如,腔量子电动力学的强耦合和弱耦合制度)对HOM效应的特征。HOM效应在线性光学量子计算领域以及测试单光子源不可区分性的协议中提供了应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.00
自引率
5.30%
发文量
374
审稿时长
2.1 months
期刊介绍: The Journal of the Optical Society of America B (JOSA B) is a general optics research journal that complements JOSA A. It emphasizes scientific research on the fundamentals of the interaction of light with matter such as quantum optics, nonlinear optics, and laser physics. Topics include: Advanced Instrumentation and Measurements Fiber Optics and Fiber Lasers Lasers and Other Light Sources from THz to XUV Light-Induced Phenomena Nonlinear and High Field Optics Optical Materials Optics Modes and Structured Light Optomechanics Metamaterials Nanomaterials Photonics and Semiconductor Optics Physical Optics Plasmonics Quantum Optics and Entanglement Quantum Key Distribution Spectroscopy and Atomic or Molecular Optics Superresolution and Advanced Imaging Surface Optics Ultrafast Optical Phenomena Wave Guiding and Optical Confinement JOSA B considers original research articles, feature issue contributions, invited reviews and tutorials, and comments on published articles.
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