Rectification of Vortex Motion in a Circular Ratchet Channel
arXiv:1107.5599 · doi:10.1103/PhysRevB.84.144511
Abstract
We study the dynamics of vortices in an asymmetric ring channel driven by an external current I in a Corbino setup. The asymmetric potential can rectify the motion of vortices and cause a net flow without any unbiased external drive, which is called ratchet effect. With an applied ac current, the potential can rectify the motion of vortices in the channel and induce a dc net flow. We show that the net flow of vortices strongly depends on vortex density and frequency of the driving current. Depending on the density, we distinguish a "single-vortex" rectification regime (low density) determined by the potential-energy landscape inside each cell of the channel (i.e., "hard" and "easy" directions of motion) and "multi-vortex", or "collective", rectification (high density) when the interaction between vortices becomes important. The frequency of the driving ac current determines a possible distance that a vortex could move during one period. For high frequency current, vortices only oscillate in the triangular cell. For low frequency, the vortex angular velocity increases nearly linearly until the driving force reaches the maximum friction force in the hard direction. Furthermore, the commensurability between the number of vortices and the number of cells results in a stepwise curve. Besides the integer steps, i.e., the large steps found in the single vortex case, we also found fractional steps corresponding to fractional ratio between the numbers of vortices and triangular cells. The principal and fractional frequencies for different currents are found, when the net flow of vortices reaches the maximum that is proportional to the frequency when the density of vortices is low. We have performed preliminary measurements on a device containing a single weak-pinning circular ratchet channel in a Corbino geometry and observed a substantial asymmetric vortex response.
12 pages, 12 figures
References in corpus (16)
- Artificial Brownian motors: Controlling transport on the nanoscale
- Brownian motors
- Vortex rectification effects in films with periodic asymmetric pinning
- Reversible Vortex Ratchet Effects and Ordering in Superconductors with Simple Asymmetric Potential Arrays
- Experimental ratchet effect in superconducting films with periodic arrays of asymmetric potentials
- On the origin of the reversed vortex ratchet motion
- Asymmetric weak-pinning superconducting channels: vortex ratchets
- Tearing transition and plastic flow in superconducting thin films
- Negative differential resistivity in superconductors with periodic arrays of pinning sites
- Nonuniform Self-Organized Dynamical States in Superconductors with Periodic Pinning
- Dynamics of Vortex Shells in Mesoscopic Superconducting Corbino Disks
- Absolute Transverse Mobility and Ratchet Effect on Periodic 2D Symmetric Substrates
- Rectification and Flux Reversals for Vortices Interacting with Triangular Traps
- Vortex dynamics in superconducting channels with periodic constrictions
- Unconventional Vortex Dynamics in Mesoscopic Superconducting Corbino Disks
- Picovoltmeter for probing vortex dynamics in a single weak-pinning Corbino channel
Cited by in corpus (20)
- Self-propelled Janus particles in a ratchet: Numerical simulations
- Statics and Dynamics of Skyrmions Interacting with Pinning: A Review
- Magnetic flux pinning in superconductors with hyperbolic-tesselation arrays of pinning sites
- Reversible Ratchet Effects for Vortices in Conformal Pinning Arrays
- Reversible Vector Ratchets for Skyrmion Systems
- Skyrmion Ratchet in Funnel Geometries
- Pinning, Ordering, and Dynamics of Vortices in Conformal Crystal and Gradient Pinning Arrays
- Dynamics of Magnus Dominated Particle Clusters, Collisions, Pinning and Ratchets
- Transverse ac Driven and Geometric Ratchet Effects for Vortices in Conformal Crystal Pinning Arrays
- Pattern formation in vortex matter with pinning and frustrated inter-vortex interactions
- Pinning, Flux Diodes, and Ratchets for Vortices Interacting with Conformal Pinning Arrays
- Comparing the Dynamics of Skyrmions and Superconducting Vortices
- Tunable diffusion of magnetic particles in a quasi-one-dimensional channel
- Time-Dependent Ginzburg-Landau Simulations of Superconducting Vortices in Three Dimensions
- Clogging and Transport of Driven Particles in Asymmetric Funnel Arrays
- Rectified motion in an asymmetric channel: the role of hydrodynamic interactions with walls
- Collective Dynamics and Defect Generation for Wigner Crystal Ratchets
- The importance of thermal gradients on the vortex dynamics and magnetic behavior of mesoscopic superconducting samples
- Cyclic Superconducting Quantum Refrigerators Using Guided Fluxon Propagation
- Magnetic Field Effects and Transverse Ratchets in Charge Lattices Coupled to Asymmetric Substrates