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- W1998336310 abstract "We study the transient regime of spontaneous emission by an atom excited in a planar high-Q microcavity. The variation of the spatial distribution of the radiation outside the cavity is determined as a function of the increasing number of internal reflections for transition dipole moments parallel and perpendicular to the mirrors and for mirror separations equal to $ensuremath{lambda}/2$ and $ensuremath{lambda}/4.$ Particular attention is given to the parallel dipole in the $ensuremath{lambda}/2$ cavity, where the number of reflections is closely proportional to the elapsed time. It is shown that the transient regime extends over times of the order of the cavity decay time, in contrast to the effectively one-dimensional cavities previously studied, where the steady state is achieved after the cavity round-trip time. The field distribution inside the cavity tends to a steady-state form whose dimension parallel to the mirrors is of the order of the transverse coherence length. Despite this transverse localization of the field excitation, it is shown that the conditions for the achievement of strong atom-field coupling and the observation of Rabi oscillations cannot be met in the planar microcavity." @default.
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- W1998336310 date "1999-12-01" @default.
- W1998336310 modified "2023-10-16" @default.
- W1998336310 title "Theory of transient spontaneous emission by an atom in a planar microcavity" @default.
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- W1998336310 doi "https://doi.org/10.1103/physreva.60.4951" @default.
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