English

Long-lived Quantum Coherence between Macroscopically Distinct States in Superradiance

Quantum Physics 2009-10-31 v1 Mesoscale and Nanoscale Physics Optics

Abstract

The dephasing influence of a dissipative environment reduces linear superpositions of macroscopically distinct quantum states (sometimes also called Schr\"odinger cat states) usually almost immediately to a statistical mixture. This process is called decoherence. Couplings to the environment with a certain symmetry can lead to slow decoherence. In this Letter we show that the collective coupling of a large number of two-level atoms to an electromagnetic field mode in a cavity that leads to the phenomena of superradiance has such a symmetry, at least approximately. We construct superpositions of macroscopically distinct quantum states decohering only on a classical time scale and propose an experiment in which the extraordinarily slow decoherence should be observable.

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Cite

@article{arxiv.quant-ph/9903040,
  title  = {Long-lived Quantum Coherence between Macroscopically Distinct States in Superradiance},
  author = {Daniel Braun and Petr A. Braun and Fritz Haake},
  journal= {arXiv preprint arXiv:quant-ph/9903040},
  year   = {2009}
}

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4 pages of revtex

R2 v1 2026-07-22T20:05:43.703Z