Bi-directional universal dynamics in a spinor Bose gas close to a non-thermal fixed point
arXiv:1812.08571 · doi:10.1103/PhysRevA.99.033611
Abstract
We numerically study the universal scaling dynamics of an isolated one-dimensional ferromagnetic spin-1 Bose gas. Preparing the system in a far-from-equilibrium initial state, simultaneous coarsening and refining is found to enable and characterize the approach to a non-thermal fixed point. A macroscopic length scale which scales in time according to , with , quantifies the coarsening of the size of spin textures. At the same time kink-like defects populating these textures undergo a refining process measured by a shrinking microscopic length scale , with . The combination of these scaling evolutions enables particle and energy conservation in the isolated system and constitutes a bi-directional transport in momentum space. The value of the coarsening exponent suggests the dynamics to belong to the universality class of diffusive coarsening of the one-dimensional XY-model. However, the universal momentum distribution function exhibiting non-linear transport marks the distinction between diffusive coarsening and the approach of a non-thermal fixed point in the isolated system considered here. This underlines the importance of the universal scaling function in classifying non-thermal fixed points. Present-day experiments with quantum gases are expected to have access to the predicted bi-directional scaling.
9 pages, 6 figures
References in corpus (17)
- Spontaneous symmetry breaking in a quenched ferromagnetic spinor Bose condensate
- Experimental Observation of a Generalized Gibbs Ensemble
- Dynamics and statistical mechanics of ultra-cold Bose gases using c-field techniques
- Critical Dynamics of Spontaneous Symmetry Breaking in a Homogeneous Bose gas
- Non-thermal fixed points: effective weak-coupling for strongly correlated systems far from equilibrium
- Emergence of a Turbulent Cascade in a Quantum Gas
- Emergence of coherence and the dynamics of quantum phase transitions
- Nonthermal fixed points and the functional renormalization group
- Universality far from equilibrium: From superfluid Bose gases to heavy-ion collisions
- Critical Dynamics of a Two-dimensional Superfluid near a Non-Thermal Fixed Point
- Universal Rephasing Dynamics after a Quantum Quench via Sudden Coupling of Two Initially Independent Condensates
- Exploring dynamical phase transitions and prethermalization with quantum noise of excitations
- Strong versus weak wave-turbulence in relativistic field theory
- Nonthermal fixed points and solitons in a one-dimensional Bose gas
- Dynamical models and the phase ordering kinetics of the s=1 spinor condensate
- Different growth rates for spin and superfluid order in a quenched spinor condensate
- Crossover between Ising and XY-like behavior in the off-equilibrium kinetics of the one-dimensional clock model