Interacting lattice systems with quantum dissipation: a quantum Monte Carlo study
arXiv:1704.00606 · doi:10.1103/PhysRevB.97.035148
Abstract
Quantum dissipation arises when a large system can be split in a quantum system and an environment where the energy of the former flows to. Understanding the effect of dissipation on quantum many-body systems is of particular importance due to its potential relations with quantum information processing. We propose a conceptually simple approach to introduce the dissipation into interacting quantum systems in a thermodynamical context, in which every site of a 1d lattice is coupled off-diagonally to its own bath. The interplay between quantum dissipation and interactions gives rise to counterintuitive interpretations such as a compressible zero-temperature state with spontaneous discrete symmetry breaking and a thermal phase transition in a one-dimensional dissipative quantum many-body system as revealed by Quantum Monte Carlo path integral simulations.
References in corpus (28)
- Quantum States and Phases in Driven Open Quantum Systems with Cold Atoms
- Quantum Monte Carlo with Directed Loops
- Dynamical Critical Phenomena in Driven-Dissipative Systems
- Atomic three-body loss as a dynamical three-body interaction
- Algebraic versus exponential decoherence in dissipative many-particle systems
- Quantum simulation of open-system dynamical maps with trapped ions
- Quantum phase transition in a far from equilibrium steady state of XY spin chain
- Quantum critical states and phase transitions in the presence of non equilibrium noise
- Observation of Unusual Mass Transport in Solid hcp 4He
- Finite quantum dissipation: the challenge of obtaining specific heat
- Non-Markovian Dynamics in Chiral Quantum Networks with Spins and Photons
- Interaction-induced impeding of decoherence and anomalous diffusion
- Driven Markovian Quantum Criticality
- Phase diagram and critical exponents of a dissipative Ising spin chain in a transverse magnetic field
- Criticality in one dimension with inverse square-law potentials
- Asymptotic Floquet states of open quantum systems: The role of interaction
- Monte Carlo simulations of the directional-ordering transition in the two-dimensional classical and quantum compass model
- Engineering Local optimality in Quantum Monte Carlo algorithms
- Dissipation-driven quantum phase transitions in a Tomonaga-Luttinger liquid electrostatically coupled to a metallic gate
- Dissipative ground-state preparation of a spin chain by a structured environment
- Implementation of Chiral Quantum Optics with Rydberg and Trapped-ion Setups
- Identifying a bath-induced Bose liquid in interacting spin-boson models
- A cluster algorithm for resistively shunted Josephson junctions
- Local Quantum Criticality in the Two-dimensional Dissipative Quantum XY Model
- Quench Dynamics in Bose condensates in the Presence of a Bath: Theory and Experiment
- Emergence of spontaneous symmetry breaking in dissipative lattice systems
- Three distinct types of quantum phase transitions in a (2+1)-dimensional array of dissipative Josephson junctions
- Quantum criticality in a dissipative (2+1)-dimensional XY model of circulating currents in high-Tc cuprates
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- Non-Hermitian Physics
- Neural-Network Approach to Dissipative Quantum Many-Body Dynamics
- Scaling and diabatic effects in quantum annealing with a D-Wave device
- Solving the Liouvillian Gap with Artificial Neural Networks
- Widely existing mixed phase structure of quantum dimer model on square lattice
- Stable-unstable transition for a Bose-Hubbard chain coupled to an environment
- Spin chain on a metallic surface: Dissipation-induced order vs. Kondo entanglement
- Classical model emerges in quantum entanglement: Quantum Monte Carlo study for an Ising-Heisenberg bilayer
- Sampling reduced density matrix to extract fine levels of entanglement spectrum and restore entanglement Hamiltonian
- Tracking the variation of entanglement Rényi negativity: a quantum Monte Carlo study
- Transverse Quantum Fluids
- Convex Optimization for Nonequilibrium Steady States on a Hybrid Quantum Processor
- Universal Correlations as Fingerprints of Transverse Quantum Fluids
- Bath-engineering magnetic order in quantum spin chains: An analytic mapping approach
- Quantum optimization within lattice gauge theory model on a quantum simulator
- Density-wave steady-state phase of dissipative ultracold fermions with nearest-neighbor interactions
- Critical phase induced by Berry phase and dissipation in a spin chain
- Dissipative Majorana quantum wires