带有巨原子的非马尔可夫波导 QED 中的双光子动力学

IF 2.9 2区 物理与天体物理 Q2 Physics and Astronomy
Wenju Gu, Tao Li, Ye Tian, Zhen Yi, Gao-xiang Li
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引用次数: 0

摘要

我们使用解析vent 方法研究了在非马尔可夫机制下,与巨原子耦合的一维波导中的单光子和双光子散射。非马尔可夫行为导致原子光子束缚态无法被单个入射光子激发。然而,束缚态可以通过多通道散射理论描述的双光子散射过程激发,由此可以分析束缚态中光子的捕获概率。此外,我们还分析了双光子散射过程,得到了散射态的分析表达式。随着非马尔可夫效应的加强,非相干功率谱中出现了两个峰值,这归因于系统表现为由巨原子耦合点形成的泄漏空腔。通过对二阶相关函数的分析,我们观察到了传输光子的束集行为、反射光子的反束集行为以及耦合点分离时的独特检索行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Two-photon dynamics in non-Markovian waveguide QED with a giant atom

Two-photon dynamics in non-Markovian waveguide QED with a giant atom
We investigate one- and two-photon scattering in a one-dimensional waveguide coupled to a giant atom within the non-Markovian regime using the resolvent approach. The non-Markovian behavior gives rise to an atom-photon bound state that cannot be excited by a single incident photon. However, the bound state can be excited via the two-photon scattering process described by multichannel scattering theory, from which an analytical trapping probability of a photon in the bound state can be achieved. Additionally, we analyze the two-photon scattering process, obtaining the analytical expressions for scattered states. As non-Markovian effects strengthen, two peaks appear in the incoherent power spectrum, attributed to the system behaving as a leaky cavity formed by the giant atom's coupling points. Through the analysis of second-order correlation functions, we observe the bunching behavior for transmitted photons, antibunching behavior for reflected photons, and the distinctive retrieval behavior at the coupling points' separation.
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来源期刊
Physical Review A
Physical Review A 物理-光学
CiteScore
5.40
自引率
24.10%
发文量
0
审稿时长
2.2 months
期刊介绍: Physical Review A (PRA) publishes important developments in the rapidly evolving areas of atomic, molecular, and optical (AMO) physics, quantum information, and related fundamental concepts. PRA covers atomic, molecular, and optical physics, foundations of quantum mechanics, and quantum information, including: -Fundamental concepts -Quantum information -Atomic and molecular structure and dynamics; high-precision measurement -Atomic and molecular collisions and interactions -Atomic and molecular processes in external fields, including interactions with strong fields and short pulses -Matter waves and collective properties of cold atoms and molecules -Quantum optics, physics of lasers, nonlinear optics, and classical optics
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