Theory of pseudomodes in quantum optical processes

B. J. Dalton, Stephen M. Barnett, and B. M. Garraway
Phys. Rev. A 64, 053813 – Published 12 October 2001
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Abstract

This paper deals with non-Markovian behavior in atomic systems coupled to a structured reservoir of quantum electromagnetic field modes, with particular relevance to atoms interacting with the field in high-Q cavities or photonic band-gap materials. In cases such as the former, we show that the pseudomode theory for single-quantum reservoir excitations can be obtained by applying the Fano diagonalization method to a system in which the atomic transitions are coupled to a discrete set of (cavity) quasimodes, which in turn are coupled to a continuum set of (external) quasimodes with slowly varying coupling constants and continuum mode density. Each pseudomode can be identified with a discrete quasimode, which gives structure to the actual reservoir of true modes via the expressions for the equivalent atom-true mode coupling constants. The quasimode theory enables cases of multiple excitation of the reservoir to now be treated via Markovian master equations for the atom-discrete quasimode system. Applications of the theory to one, two, and many discrete quasimodes are made. For a simple photonic band-gap model, where the reservoir structure is associated with the true mode density rather than the coupling constants, the single quantum excitation case appears to be equivalent to a case with two discrete quasimodes.

  • Received 22 February 2001

DOI:https://doi.org/10.1103/PhysRevA.64.053813

©2001 American Physical Society

Authors & Affiliations

B. J. Dalton1,2, Stephen M. Barnett3, and B. M. Garraway1

  • 1Sussex Centre for Optical and Atomic Physics, University of Sussex, Brighton BN1 9QH, United Kingdom
  • 2Department of Physics, University of Queensland, St Lucia, Queensland 4072, Australia
  • 3Department of Physics and Applied Physics, University of Strathclyde, Glasgow G4 0NG, United Kingdom

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Issue

Vol. 64, Iss. 5 — November 2001

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