Theoretical methods to treat a single dissipative bosonic mode coupled globally to an interacting many body system
arXiv:2004.11807 · doi:10.1103/PhysRevResearch.2.043255
Abstract
We present two approaches capable of describing the dynamics of an interacting many body system on a lattice coupled globally to a dissipative bosonic mode. Physical realizations are for example ultracold atom gases in optical lattice coupled to a photonic mode of an optical cavity or electronic gases in solids coupled to THz cavity fields. The first approach, applicable for large dissipation strengths and any system size, is a variant of the many-body adiabatic elimination method for investigating the long time dynamics of the system. The second method extends the time-dependent matrix product techniques to capture the global coupling of the interacting particles to the bosonic mode and its open nature. It gives numerically exact results for small to intermediate system sizes. As a benchmark for our methods we perform the full quantum evolution of a Bose-Hubbard chain coupled to a cavity mode. We show that important deviations from the mean-field behavior occur when considering the full atoms cavity coupling [1].
This article describes in detail the methods developed and used in arXiv:1909.07335 to analyze the dynamics of atoms coupled to a cavity mode
References in corpus (26)
- The density-matrix renormalization group in the age of matrix product states
- Real time evolution using the density matrix renormalization group
- Beyond the Jaynes-Cummings model: circuit QED in the ultrastrong coupling regime
- Strong light-matter coupling in two-dimensional atomic crystals
- Matrix Product Density Operators: Simulation of finite-T and dissipative systems
- The ITensor Software Library for Tensor Network Calculations
- Cold atoms in cavity-generated dynamical optical potentials
- Quantum trajectories and open many-body quantum systems
- A note on symmetry reductions of the Lindblad equation: transport in constrained open spin chains
- Dynamical phase transition in the open Dicke model
- Minimally Entangled Typical Thermal State Algorithms
- Self-organization of a Bose-Einstein condensate in an optical cavity
- Ultracold atoms in optical lattices generated by quantized light fields
- Dissipation induced Tonks-Girardeau gas in an optical lattice
- Mott insulator states of ultracold atoms in optical resonators
- Interaction-induced impeding of decoherence and anomalous diffusion
- Heating-Induced Long-Range -Pairing in the Hubbard Model
- Nonequilibrium Phase Transition of Interacting Bosons in an Intra-Cavity Optical Lattice
- Two-time Correlations Probing the Dynamics of Dissipative Many-Body Quantum Systems: Aging and Fast Relaxation
- Simulating generic spin-boson models with matrix product states
- Cavity-QED with cold atoms trapped in a double-well potential
- Microscopic physics of quantum self-organisation of optical lattices in cavities
- Charge-density-wave melting in the one-dimensional Holstein model
- Boson-mediated quantum spin simulators in transverse fields: XY model and spin-boson entanglement
- Self-ordering dynamics of ultracold atoms in multicolored cavity fields
- Interacting spins in a cavity: finite size effects and symmetry-breaking dynamics
Cited by in corpus (16)
- Long-range photon fluctuations enhance photon-mediated electron pairing and superconductivity
- Breaking strong symmetries in dissipative quantum systems: Bosonic atoms coupled to a cavity
- Many-Body Open Quantum Systems
- First-order photon condensation in magnetic cavities: A two-leg ladder model
- Dicke transition in open many-body systems determined by fluctuation effects
- Critical light-matter entanglement at cavity mediated phase transition
- Topological protection of Majorana polaritons in a cavity
- Controlling the dynamics of atomic correlations via the coupling to a dissipative cavity
- Fluctuation-Induced Bistability of Fermionic Atoms Coupled to a Dissipative Cavity
- Self-organized cavity bosons beyond the adiabatic elimination approximation
- One-dimensional extended Hubbard model coupled with an optical cavity
- From Light-Cone to Supersonic Propagation of Correlations by Competing Short- and Long-Range Couplings
- Moiré Superradiance in Cavity Quantum Electrodynamics with Quantum Atom Gas
- Master Equation for a Quantum Gas of Polarizable Particles in Cavities
- Dissipative Generation of Currents by Nonreciprocal Local and Global Environments
- Microscopy of cavity-induced density-wave ordering in ultracold gases