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Fully quantum mechanical dynamic analysis of single-photon transport in a single-mode waveguide coupled to a traveling-wave resonator

myco 添加于 2010-10-12 20:20 | 1965 次阅读 | 0 个评论
  •  作 者

    III EEH, Elshaari AW, Preble SF
  •  摘 要

    We analyze the dynamics of single photon transport in a single-mode waveguide coupled to a micro-optical resonator using a fully quantum mechanical model. We examine the propagation of a single-photon Gaussian packet through the system under various coupling conditions. We review the theory of single photon transport phenomena as applied to the system and we develop a discussion on the numerical technique we used to solve for dynamical behavior of the quantized field. To demonstrate our method and to establish robust single photon results, we study the process of adiabatically lowering or raising the energy of a single photon trapped in an optical resonator under active tuning of the resonator. We show that our fully quantum mechanical approach reproduces the semi-classical result in the appropriate limit and that the adiabatic invariant has the same form in each case. Finally, we explore the trapping of a single photon in a system of dynamically tuned, coupled optical cavities.
  •  详细资料

    • 关键词: quant-ph; physics.optics
    • 文献种类: Journal Article
    • 备注:arXiv:1010.1779v1; 24 pages, 9 figures
  • 学科领域 自然科学 » 物理学

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