paper

Selfsynchronization and dissipation-induced threshold in collective atomic recoil lasing

arXiv:quant-ph/0402013 · doi:10.1103/PhysRevLett.93.083601

Abstract

Networks of globally coupled oscillators exhibit phase transitions from incoherent to coherent states. Atoms interacting with the counterpropagating modes of a unidirectionally pumped high-finesse ring cavity form such a globally coupled network. The coupling mechanism is provided by collective atomic recoil lasing (CARL), i.e. cooperative Bragg scattering of laser light at an atomic density grating, which is self-induced by the laser light. Under the rule of an additional friction force, the atomic ensemble is expected to undergo a phase transition to a state of synchronized atomic motion. We present the experimental investigation of this phase transition by studying the threshold behavior of the CARL process.

4 pages, 3 figures

Selfsynchronization and dissipation-induced threshold in collective atomic recoil lasing · wovepaper