Individual Vortex Manipulation and Stick-Slip Motion in Periodic Pinning Arrays
arXiv:1712.04566 · doi:10.1103/PhysRevB.97.214521
Abstract
We numerically examine the manipulation of vortices interacting with a moving trap representing a magnetic force tip translating across a superconducting sample containing a periodic array of pinning sites. As a function of the tip velocity and coupling strength, we find five distinct dynamic phases, including a decoupled regime where the vortices are dragged a short distance within a pinning site, an intermediate coupling regime where vortices in neighboring pinning sites exchange places, an intermediate trapping regime where individual vortices are dragged longer distances and exchange modes of vortices occur in the surrounding pins, an intermittent multiple trapping regime where the trap switches between capturing one or two vortices, and a strong couping regime in which the trap permanently captures and drags two vortices. In some regimes we observe the counterintuitive behavior that slow moving traps couple less strongly to vortices than faster moving traps; however, the fastest moving traps are generally decoupled. The different phases can be characterized by the distances the vortices are displaced and the force fluctuations exerted on the trap. We find different types of stick-slip motion depending on whether vortices are moving into and out of pinning sites, undergoing exchange, or performing correlated motion induced by vortices outside of the trap. Our results are general to the manipulation of other types of particle-based systems interacting with periodic trap arrays, such as colloidal particles or certain types of frictional systems.
10 pages, 13 figures
References in corpus (22)
- Observation of Majorana fermions with spin selective Andreev reflection in the vortex of topological superconductor
- Depinning and nonequilibrium dynamic phases of particle assemblies driven over random and ordered substrates: a review
- Observation of Vortex Pinning in Bose-Einstein Condensates
- Imaging of super-fast dynamics and flow instabilities of superconducting vortices
- Mechanics of Individual, Isolated Vortices in a Cuprate Superconductor
- Controlled Manipulation of Individual Vortices in a Superconductor
- Quantized Transport for a Skyrmion Moving on a Two-Dimensional Periodic Substrate
- Optical Manipulation of Single Flux Quanta
- Enhancement of long range correlations in a 2D vortex lattice by incommensurate 1D disorder potential
- Mechanical control of individual superconducting vortices
- Nanoscale assembly of superconducting vortices with scanning tunnelling microscope tip
- Strong-pinning regimes by spherical inclusions in anisotropic type-II superconductors
- Fluxonic Cellular Automata
- Negative differential resistivity in superconductors with periodic arrays of pinning sites
- Effect of hexagonal patterned arrays and defect geometry on the critical current of superconducting films
- Moving Vortex Phases, Dynamical Symmetry Breaking, and Jamming for Vortices in Honeycomb Pinning Arrays
- Stabilizing fractional vortices in multiband superconductors with periodic pinning arrays
- Dynamic transition of vortices into phase slips and generation of vortex-antivortex pairs in thin film Josephson junctions under dc and ac currents
- Viscous Decoupling Transitions for Individually Dragged Particles in Systems with Quenched Disorder
- Vortex pinning by the point potential in topological superconductors: a scheme for braiding Majorana bound states
- Prediction of polaron-like vortices and dissociation depinning transition in magnetic superconductors: The example of ErNi2B2C
- Competing structures in two dimensions: square-to-hexagonal transition
Cited by in corpus (7)
- Active Microrheology, Hall Effect, and Jamming in Chiral Fluids
- Braiding Majorana Fermions and Creating Quantum Logic Gates with Vortices on a Periodic Pinning Structure
- Manipulating multi-vortex states in superconducting structures
- Imaging and controlling vortex dynamics in mesoscopic superconductor-normal-metal-superconductor arrays
- Commensuration Effects on Skyrmion Hall Angle and Drag for Manipulation of Skyrmions on Two-Dimensional Periodic Substrates
- Fluctuations and Pinning for Individually Manipulated Skyrmions
- Active Rheology and Anti-Commensuration Effects For Driven Probe Particles on Two Dimensional Periodic Pinning Substrates