Dynamics of vortex defect formation in two dimensional Coulomb crystals
arXiv:2105.11680 · doi:10.1103/PhysRevB.106.104106
Abstract
We study the non-equilibrium dynamics of two dimensional planar ion Coulomb crystals undergoing a structural buckling transition to a three plane configuration, driven by a reduction of the transverse confining frequency. This phase transition can be theoretically modeled using a mapping to a two dimensional Ginzburg-Landau theory with complex order parameter field. We demonstrate that finite rate quenches result in creation of stable topological vortices, which are localized point regions around which the phase of the order parameter field winds a multiple of 2π. The density of the defects as a function of quench rate is investigated using molecular dynamics simulations and its scaling is shown to be consistent with Kibble-Zurek theory of defect formation. Following the quench, the annihilation of vortex and anti-vortex pairs results in the relaxation of defect density that follows a diffusive scaling with a logarithmic correction. This work highlights the potential for investigating complex non-equilibrium statistical physics of topological defects in an experimentally accessible ion trap setting.
References in corpus (6)
- Quantum computing with trapped ions
- Topological defects as relics of emergent continuous symmetry and Higgs condensation of disorder in ferroelectrics
- Structural phase transitions in low-dimensional ion crystals
- Double wells, scalar fields and quantum phase transitions in ions traps
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Cited by in corpus (6)
- Classification of electronic nematicity in three-dimensional crystals and quasicrystals
- A critical nematic phase with pseudogap-like behavior in twisted bilayers
- Heat transport in a Coulomb ion crystal with a topological defect
- Domain formation and structural stabilities in mixed-species Coulomb crystals induced by sympathetically cooled highly charged ions
- Separation of the Kibble-Zurek Mechanism from Quantum Criticality
- Observing the dynamics of octupolar structural transitions in trapped-ion clusters