Title of article
Bose–Einstein condensation versus Dicke–Hepp–Lieb transition in an optical cavity Original Research Article
Author/Authors
Francesco Piazza، نويسنده , , Philipp Strack، نويسنده , , Wilhelm Zwerger، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
25
From page
135
To page
159
Abstract
We provide an exact solution for the interplay between Bose–Einstein condensation and the Dicke–Hepp–Lieb self-organization transition of an ideal Bose gas trapped inside a single-mode optical cavity and subject to a transverse laser drive. Based on an effective action approach, we determine the full phase diagram at arbitrary temperature, which features a bi-critical point where the transitions cross. We calculate the dynamically generated band structure of the atoms and the associated suppression of the critical temperature for Bose–Einstein condensation in the phase with a spontaneous periodic density modulation. Moreover, we determine the evolution of the polariton spectrum due to the coupling of the cavity photons and the atomic field near the self-organization transition, which is quite different above or below the Bose–Einstein condensation temperature. At low temperatures, the critical value of the Dicke–Hepp–Lieb transition decreases with temperature and thus thermal fluctuations can enhance the tendency to a periodic arrangement of the atoms.
Keywords
Dicke model , self-organization , Bose–Einstein condensation , Optical cavity
Journal title
Annals of Physics
Serial Year
2013
Journal title
Annals of Physics
Record number
1206979
Link To Document