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Single photon two-level atom interactions in 1-D dielectric waveguide: quantum mechanical formalism and applications

机译:一维介质波导中的单光子两级原子相互作用:量子力学形式学和应用

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摘要

In this paper, we propose an effective model to describe the interactions between a two-level atom and scattered light in a 1-D dielectric waveguide. The proposed formalism allows us to incorporate the effect of changing optical media inside the continuum while demonstrating a non-classical derivation of Fresnel Law. We obtain the transport characteristics of the two-level system, explore its high-Q bandreject filter property and discuss the implications of radiative and non-radiative dissipation. In addition, we apply our formalism to a modified Fabry-Perot interferometer and show the variation in its spontaneous emission characteristics with changing interferometer length. Finally, we conclude with further remarks on the link between the waveguide and cavity quantum electrodynamics.
机译:在本文中,我们提出了一个有效的模型来描述一维介质波导中两能级原子与散射光之间的相互作用。所提出的形式主义使我们能够在不断发展的过程中纳入改变光学介质的效果,同时证明了菲涅耳定律的非经典推导。我们获得了两级系统的传输特性,探讨了其高Q带阻滤波器的特性,并讨论了辐射和非辐射耗散的含义。此外,我们将形式主义应用于改进的Fabry-Perot干涉仪,并显示其自发发射特性随干涉仪长度的变化而变化。最后,我们在波导与腔体量子电动力学之间的联系上作进一步说明。

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