Steady-state phases of dissipative spin-1/2 XYZ model with frustrated interaction
arXiv:2107.10459 · doi:10.1103/PhysRevB.104.155130
Abstract
We investigate the steady-state phases of the dissipative spin-1/2 - XYZ model on a two-dimensional square lattice. We show the next-nearest-neighboring interaction plays a crucial role in determining the steady-state properties. By means of the Gutzwiller mean-field factorization, we find the emergence of antiferromag-netic steady-state phases. The existence of such antiferromagnetic steady-state phases in thermodynamic limit is confirmed by the cluster mean-field analysis. Moreover, we find the evidence of the limit cycle phase through the largest quantum Lyapunov exponent in small cluster, and check the stability of the oscillation by calculating the averaged oscillation amplitude up to cluster mean-field approximation.
10 pages, 8 figures, accepted version
References in corpus (18)
- Many-Body Physics with Ultracold Gases
- Quantum phase transition from a superfluid to a Mott insulator in a gas of ultracold atoms
- Controlling many-body dynamics with driven quantum scars in Rydberg atom arrays
- Observation of a dissipative phase transition in a one-dimensional circuit QED lattice
- Neural-Network Approach to Dissipative Quantum Many-Body Dynamics
- Discrete Time-Crystalline Order in Cavity and Circuit QED Systems
- Experimental identification of quantum spin liquids
- Variational Quantum Monte Carlo Method with a Neural-Network Ansatz for Open Quantum Systems
- Variational neural network ansatz for steady states in open quantum systems
- Variational principle for steady states of dissipative quantum many-body systems
- Constructing neural stationary states for open quantum many-body systems
- Limit cycle phase in driven-dissipative spin systems
- Boundary time crystals in collective -level systems
- Solving the Liouvillian Gap with Artificial Neural Networks
- Square-Lattice Heisenberg Antiferromagnets with 4 spins: AMoOPOCl (A = K, Rb)
- Collinear antiferromagnetic state in a two-dimensional Hubbard model at half filling
- Nonuniform phases in the geometrically frustrated dissipative XYZ model
- Dissipation-induced antiferromagnetic-like frustration in coupled photonic resonators
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- Steady-state susceptibility in continuous phase transitions of dissipative systems
- Reduced Basis Method for Driven-Dissipative Quantum Systems