Artículo
Superconducting heterostructures: From antipinning to pinning potentials
Carreira, Santiago José
; Chiliotte, Claudio Ezequiel; Bekeris, Victoria Isabel
; Rosen, Yaniv; Monton, Carlos Martin
; Schuller, Ivan K.
Fecha de publicación:
07/2014
Editorial:
IOP Publishing
Revista:
Superconductor Science And Technology
ISSN:
0953-2048
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
We study vortex lattice dynamics in a heterostructure that combines two type-II superconductors: a niobium film and a dense triangular array of submicrometric vanadium (V) pillars. Magnetic ac susceptibility measurements reveal a sudden increase in ac penetration, related to an increase in vortex mobility above a magnetic field H* (T), that decreases linearly with temperature. Additionally, temperature independent matching effects that occur when the number of vortices in the sample is an integer of the number of V pillars, strongly reduce vortex mobility, and were observed for the first and second matching fields, Hand H The angular dependence of H Hnd H* (T) shows that matching is determined by the normal applied field component, while H* (T) is independent of the applied field orientation. This important result identifies H* (T) with the critical field boundary for the normal to superconducting transition of V pillars. Below H* (T) superconducting V pillars repel vortices, and the array becomes an 'antipinning' landscape that is more effective in reducing vortex mobility than the 'pinning' landscape of the normal V sites above . Matching effects are observed both below and above H* (T) implying the presence of ordered vortex configurations for 'antipinning' or 'pinning' arrays. © 2014 IOP Publishing Ltd.
Palabras clave:
Heterostructure
,
Superconductor
,
Type Ii
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Colecciones
Articulos(IFIBA)
Articulos de INST.DE FISICA DE BUENOS AIRES
Articulos de INST.DE FISICA DE BUENOS AIRES
Citación
Carreira, Santiago José; Chiliotte, Claudio Ezequiel; Bekeris, Victoria Isabel; Rosen, Yaniv; Monton, Carlos Martin; et al.; Superconducting heterostructures: From antipinning to pinning potentials; IOP Publishing; Superconductor Science And Technology; 27; 8; 7-2014; 85007-85012
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