Non-Quantized Penetration of Magnetic Field in the Vortex State of Superconductors
arXiv:cond-mat/0009126 · doi:10.1038/35024025
Abstract
As first pointed out by Bardeen and Ginzburg in the early sixties, the amount of magnetic flux carried by vortices depends on their distance to the sample edge and can be smaller than one flux quantum, f0 = h/2e. In bulk superconductors, this reduction of flux becomes negligible already at submicron distances from the edge but, in thin films, the effect may survive at much larger distances. In the absence of any experimental observation, such flux reduction is perceived to be an exotic or unimportant effect, and it is often assumed that magnetic field enters type-II superconductors in units of f0. Here we report the measurements of the amount of flux associated with the entrance of individual vortices in a superconducting film and show that the flux that they bring in, always differs substantially from f0. We have observed vortices that carry as little as 0.001 f0 as well as seemingly "negative vortices" whose penetration leads to the expulsion of magnetic field. We distinguish two phenomena responsible for non-quantized flux penetration: the finite-size effect and a non-linear screening of magnetic field in the presence of a surface barrier. The latter effect has previously not been considered but is likely to cause non-quantized penetration in many cases.
pdf-file of a slighly longer version than appeared in Nature
References in corpus (1)
Cited by in corpus (40)
- Direct Observation of Vortex Shells and Magic Numbers in Mesoscopic Superconducting Disks
- Saddle point states and energy barriers for vortex entrance and exit in superconducting disks and rings
- From vortex molecules to the Abrikosov lattice in thin mesoscopic superconducting disks
- Stable fractional flux vortices in mesoscopic superconductors
- The surface barrier in mesoscopic type I and type II superconductors
- Extended Ginzburg-Landau formalism: systematic expansion in small deviation from the critical temperature
- Two-dimensional vortex behavior in highly underdoped YBa_2Cu_3O_{6+x} observed by scanning Hall probe microscopy
- Electronic structure of multiquantum giant vortex states in mesoscopic superconducting disks
- Influence of the sample geometry on the vortex matter in superconducting microstructures
- Magnetic Field Dependent Microwave Losses in Superconducting Niobium Microstrip Resonators
- Superconducting properties of mesoscopic cylinders with enhanced surface superconductivity
- Distinct magnetic signatures of fractional vortex configurations in multiband superconductors
- Vortices in a mesoscopic superconducting circular sector
- Stabilization of vortex-antivortex configurations in mesoscopic superconductors by engineered pinning
- Vortex phases in mesoscopic cylinders with suppressed surface superconductivity
- Second generation of vortex-antivortex states in mesoscopic superconductors: stabilization by artificial pinning
- Thermal signatures of Little-Parks effect in the heat capacity of mesoscopic superconducting rings
- Effects of thermal fluctuations on the magnetic behavior of mesoscopic superconductors
- Critical current in thin flat superconductors with Bean-Livingston and geometrical barriers
- Thermal suppression of surface barrier in ultrasmall superconducting structures
- Probing confined vortices with a superconducting nanobridge
- Variational approach to vortex penetration and vortex interaction
- The ac magnetic response of mesoscopic type II superconductors
- Effects of Geometrical Symmetry on the Vortex Nucleation and Penetration in Mesoscopic Superconductors
- Study of the threshold line between macroscopic and bulk behaviors for homogeneous type II superconductors
- Vortex-antivortex annihilation in mesoscopic superconductors with a central pinning center
- Instability of flux flow and production of vortex-antivortex pairs by current-driven Josephson vortices in layered superconductors
- Variational method to study vortex matter in mesoscopic superconductors
- Superconductors that do not expel magnetic flux
- Generating strong magnetic flux shielding regions in a single crystal of Bi2Sr2CaCu2O8 using a blind hole array
- An effective lowest Landau level treatment of demagnetization in superconducting mesoscopic disks
- Geometry-induced localization of thermal fluctuations in ultrathin superconducting structures
- Vortex quantum tunnelling versus thermal activation in ultrathin superconducting nanoislands
- Vortex confinement through an unquantized magnetic flux
- Partial Wave Analysis of Scattering with Nonlocal Aharonov-Bohm Effect and Anomalous Cross Section induced by Quantum Interference
- Disorder-induced trapping and anti-trapping of vortices in type-II superconductors
- Giant vortices in small mesoscopic disks: an approximate description
- Fluxoid solitons in superconducting tapered tubes and bottlenecks
- Delta H = Delta B region in volume defect-dominating superconductor
- Magnetic hysteresis of a superconducting microstrip resonator with a high edge barrier