Publication | Open Access
Chaotic Dynamical Ferromagnetic Phase Induced by Nonequilibrium Quantum Fluctuations
72
Citations
34
References
2018
Year
Quantum DynamicEngineeringMany-body Quantum PhysicHigh-dimensional ChaosBroken Discrete SymmetryDynamical Phase TransitionMagnetismQuantum ComputingSpin DynamicsQuantum EntanglementQuantum SciencePhysicsChaos TheorySpintronicsNonequilibrium Quantum FluctuationsNatural SciencesApplied PhysicsDisordered Quantum SystemQuantum FluctuationsQuantum ChaosCritical Phenomenon
We investigate the robustness of a dynamical phase transition against quantum fluctuations by studying the impact of a ferromagnetic nearest-neighbor spin interaction in one spatial dimension on the nonequilibrium dynamical phase diagram of the fully connected quantum Ising model. In particular, we focus on the transient dynamics after a quantum quench and study the prethermal state via a combination of analytic time-dependent spin wave theory and numerical methods based on matrix product states. We find that, upon increasing the strength of the quantum fluctuations, the dynamical critical point fans out into a chaotic dynamical phase within which the asymptotic ordering is characterized by strong sensitivity to the parameters and initial conditions. We argue that such a phenomenon is general, as it arises from the impact of quantum fluctuations on the mean-field out of equilibrium dynamics of any system which exhibits a broken discrete symmetry.
| Year | Citations | |
|---|---|---|
Page 1
Page 1