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Fluctuation dynamics of an open photon Bose-Einstein condensate

Quantum Physics 2019-10-09 v2 Quantum Gases

Abstract

Bosonic gases coupled to a particle reservoir have proven to support a regime of operation where Bose-Einstein condensation coexists with unusually large particle-number fluctuations. Experimentally, this situation has been realized with two-dimensional photon gases in a dye-filled optical microcavity. Here, we investigate theoretically and experimentally the open-system dynamics of a grand canonical Bose-Einstein condensate of photons. We identify a regime with temporal oscillations of the second-order coherence function g(2)(τ)g^{(2)}(\tau), even though the energy spectrum closely matches the predictions for an equilibrium Bose-Einstein distribution and the system is operated deeply in the regime of weak light-matter coupling. The observed temporal oscillations are attributed to the nonlinear, weakly driven-dissipative nature of the system which leads to time-reversal symmetry breaking.

Keywords

Cite

@article{arxiv.1908.00883,
  title  = {Fluctuation dynamics of an open photon Bose-Einstein condensate},
  author = {Fahri Emre Ozturk and Tim Lappe and Goran Hellmann and Julian Schmitt and Jan Klaers and Frank Vewinger and Johann Kroha and Martin Weitz},
  journal= {arXiv preprint arXiv:1908.00883},
  year   = {2019}
}

Comments

Published version, Physical Review A, Editors' Suggestion

R2 v1 2026-06-23T10:38:18.452Z