Physical Review A · 2013 · 240 citations · 48 references
Quantum DynamicQuantum PhotonicsEngineeringCavity QedNonequilibrium Phase TransitionsQuantum ComputingKeldysh ApproachOptical CavitiesQuantum Mechanical PropertyQuantum SimulationUltracold AtomQuantum OpticsQuantum SciencePhotonicsPhysicsAtomic PhysicsQuantum ChemistryQuantum OpticMarkovian Dissipative BathNatural SciencesApplied PhysicsDriven Atomic EnsemblesQuantum Chaos
We investigate nonequilibrium phase transitions for driven atomic ensembles interacting with a cavity mode and coupled to a Markovian dissipative bath. In the thermodynamic limit and at low frequencies, we show that the distribution function of the photonic mode is thermal, with an effective temperature set by the atom-photon interaction strength. This behavior characterizes the static and dynamic critical exponents of the associated superradiance transition. Motivated by these considerations, we develop a general Keldysh path-integral approach that allows us to study physically relevant nonlinearities beyond the idealized Dicke model. Using standard diagrammatic techniques, we take into account the leading-order corrections due to the finite number $N$ of atoms. For finite $N$, the photon mode behaves as a damped classical nonlinear oscillator at finite temperature. For the atoms, we propose a Dicke action that can be solved for any $N$ and correctly captures the atoms' depolarization due to dissipative dephasing.
48
Theory of dynamic critical phenomena
P. C. Hohenberg, Bertrand I. Halperin · Reviews of Modern Physics · 1977 · 6.7K citations
Dicke quantum phase transition with a superfluid gas in an optical cavity
Kristian Baumann, Christine Guerlin, Ferdinand Brennecke et al. · Nature · 2010 · 1.5K citations · Full text
Quantum states and phases in driven open quantum systems with cold atoms
Sebastian Diehl, A. Micheli, Adrian Kantian et al. · Nature Physics · 2008 · 1.2K citations · Full text