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We study spontaneous emission near the edge of a photonic band gap. Instead of a simple exponential decay in the vacuum, spontaneous emission displays an oscillatory behavior. A single photon-atom bound dressed state exhibits a fractional steady-state atomic population on the excited state. For a three-level atom we evaluate the spectral splitting and subnatural linewidth of spontaneous emission. In the presence of N-1 unexcited atoms we show that the collective time scale factor is equal to N^, where =2/3 for an isotropic band gap and =1 or 2 for anisotropic two-dimensional or three-dimensional band edges, respectively.
John et al. (Mon,) studied this question.
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