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Quantum electrodynamics near a photonic band gap: Photon bound states and dressed atoms

754

Citations

21

References

1990

Year

Abstract

It is shown that in dielectrics exhibiting a complete photonic band gap, quantum electrodynamics predicts the occurrence of bound states of photons to hydrogenic atoms. When the atomic transition frequency lies near a photonic band edge, the excited atomic level experiences an anomalous Lamb shift and splits into a doublet. One member of this doublet exhibits resonance fluorescence whereas the other level is dressed by the emission and reabsorption of near-resonant photons whose amplitude decays exponentially from the vicinity of the atom.

References

YearCitations

1987

13.8K

1987

9.9K

1947

1.3K

1985

1.2K

1981

1K

1947

940

1984

938

1988

836

1989

719

1985

652

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