Prethermalization of atoms due to photon-mediated long-range interactions
arXiv:1407.7842 · doi:10.1103/PhysRevLett.113.203002
Abstract
Atoms can spontaneously form spatially-ordered structures in optical resonators when they are transversally driven by lasers. This occurs when the laser intensity exceeds a threshold value and results from the mechanical forces on the atoms associated with superradiant scattering into the cavity mode. We treat the atomic motion semiclassically and show that, while the onset of spatial ordering depends on the intracavity-photon number, the stationary momentum distribution is a Maxwell-Boltzmann whose width is determined by the rate of photon losses. Above threshold, the dynamics is characterized by two time scales: after a violent relaxation, the system slowly reaches the stationary state over time scales exceeding the cavity lifetime by several orders of magnitude. In this transient regime the atomic momenta form non-Gaussian metastable distributions, which emerge from the interplay between the long-range dispersive and dissipative mechanical forces of light. We argue that the dynamics of selforganization of atoms in cavities offers a testbed for studying the statistical mechanics of long-range interacting systems.
5 pages, 3 figures, to appear in Phys. Rev. Lett
References in corpus (8)
- Statistical mechanics and dynamics of solvable models with long-range interactions
- Cold atoms in cavity-generated dynamical optical potentials
- Roton-type mode softening in a quantum gas with cavity-mediated long-range interactions
- Cavity Nonlinear Optics at Low Photon Numbers from Collective Atomic Motion
- Keldysh approach for non-equilibrium phase transitions in quantum optics: beyond the Dicke model in optical cavities
- Self-organization of atoms in a cavity field: threshold, bistability and scaling laws
- Self-Organization Threshold Scaling for Thermal Atoms Coupled to a Cavity
- Facilitated spin models of dissipative quantum glasses
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