New Journal of Physics (Jan 2019)

Collective modes of a photon Bose–Einstein condensate with thermo-optic interaction

  • Enrico Stein,
  • Frank Vewinger,
  • Axel Pelster

DOI
https://doi.org/10.1088/1367-2630/ab4b06
Journal volume & issue
Vol. 21, no. 10
p. 103044

Abstract

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Although for photon Bose–Einstein condensates the main mechanism of the observed photon–photon interaction has already been identified to be of a thermo-optic nature, its influence on the condensate dynamics is still unknown. Here a mean-field description of this effect is derived, which consists of an open-dissipative Schrödinger equation for the condensate wave function coupled to a diffusion equation for the temperature of the dye solution. With this system at hand, the lowest-lying collective modes of a harmonically trapped photon Bose–Einstein condensate are calculated analytically via a linear stability analysis. As a result, the collective frequencies and, thus, the strength of the effective photon–photon interaction turn out to strongly depend on the thermal diffusion in the cavity mirrors. In particular, a breakdown of the Kohn theorem is predicted, i.e. the frequency of the centre-of-mass oscillation is reduced due to the thermo-optic photon–photon interaction.

Keywords