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      Emission spectra of atoms with non-Markovian interaction: Fluorescence in a photonic crystal

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          Abstract

          We present a formula to evaluate the spontaneous emission spectra of an atom in contact with a radiation field with non-Markovian effects. This formula is written in terms of a two-time correlation of system observables and the environmental correlation function, and depends on the distance between the emitting atom and the detector. As an example, we use it to analyze the fluorescence spectra of a two level atom placed as an impurity in a photonic crystal. The radiation field within those materials has a gap or discontinuity where electromagnetic modes cannot propagate in the stationary limit. In that situation, the atomic emission occurs in the form of evanescent waves which are detected with less efficiency the farther we place the detector. The methodology presented in this paper may be useful to study the non-Markovian dynamics of any quantum open system in linear interaction with a harmonic oscillator reservoir and within the weak coupling approximation.

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          Author and article information

          Journal
          09 November 2007
          Article
          10.1103/PhysRevA.77.043836
          0711.1499
          309578b8-a153-47cb-8581-0a53a2143c8e
          History
          Custom metadata
          Phys. Rev. A 77, 043836 (2008)
          quant-ph

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