Quantum spin van der Pol oscillator -- a spin-based limit-cycle oscillator exhibiting quantum synchronization
arXiv:2409.08791 · doi:10.1103/mfvy-bbzm
Abstract
We introduce a quantum spin van der Pol (vdP) oscillator as a prototypical model of quantum spinbased limit-cycle oscillators, which coincides with the quantum optical vdP oscillator in the high-spin limit. The system is described as a noisy limit-cycle oscillator in the semiclassical regime at large spin numbers, exhibiting frequency entrainment to a periodic drive. Even in the smallest spin-1 case, mutual synchronization, Arnold tongues, and entanglement tongues in two dissipatively coupled oscillators, and collective synchronization in all-to-all coupled oscillators are clearly observed. The proposed quantum spin vdP oscillator will provide a useful platform for analyzing quantum spin synchronization.
18 pages, 6 figures
References in corpus (40)
- A computable measure of entanglement
- QuTiP 2: A Python framework for the dynamics of open quantum systems
- QuTiP: An open-source Python framework for the dynamics of open quantum systems
- On the volume of the set of mixed entangled states
- Quantum synchronization of quantum van der Pol oscillators with trapped ions
- Quantum synchronization of a driven self-sustained oscillator
- Quantum Synchronization of Two Ensembles of Atoms
- Entanglement tongue and quantum synchronization of disordered oscillators
- Quantum synchronization of two Van der Pol oscillators
- Quantum synchronization and entanglement generation
- Squeezing Enhances Quantum Synchronization
- Synchronizing the Smallest Possible System
- Quantum signatures of Chimera states
- Algebraic Theory of Quantum Synchronization and Limit Cycles under Dissipation
- Noise-Induced Transitions in Optomechanical Synchronization
- Observation of quantum phase synchronization in spin-1 atoms
- Synchronization and bistability of qubit coupled to a driven dissipative oscillator
- Genuine quantum signatures in synchronization of anharmonic self-oscillators
- Quantum Synchronisation Enabled by Dynamical Symmetries and Dissipation
- Mimicking a Squeezed Bath Interaction: Quantum Reservoir Engineering with Atoms
- Quantum Synchronization on the IBM Q System
- Quantum synchronization in dimer atomic lattices
- Quantum limit-cycles and the Rayleigh and van der Pol oscillators
- Noise-induced quantum synchronization
- Synchronization along quantum trajectories
- Conditional Ramsey Spectroscopy with Synchronized Atoms
- Optimal synchronization deep in the quantum regime: resource and fundamental limit
- Semiclassical Phase Reduction Theory for Quantum Synchronization
- Synchronization in two-level quantum systems
- Observation of quantum phase-synchronization in a nuclear spin-system
- Role of Coherence and Degeneracies in Quantum Synchronisation
- Noise, not squeezing, boosts synchronization in the deep quantum regime
- Degree of Quantumness in Quantum Synchronization
- Quantum Origin of Limit Cycles, Fixed Points, and Critical Slowing Down
- Symmetries and Synchronization Blockade
- Macroscopic quantum synchronization effects
- Half-integer vs. integer effects in quantum synchronization of spin systems
- Dissipative nonequilibrium synchronization of topological edge states via self-oscillation
- Quantum asymptotic phase reveals signatures of quantum synchronization
- A definition of the asymptotic phase for quantum nonlinear oscillators from the Koopman operator viewpoint