Multi-vortex versus interstitial vortices scenario in superconducting antidot arrays

作者:Thakur A D*; Ooi S; Chockalingam S P; Jesudasan John; Raychaudhuri P; Hirata K
来源:Physica C-Superconductivity and Its Applications, 2010, 470(20): 1112-1114.
DOI:10.1016/j.physc.2010.05.050

摘要

In superconducting thin films, engineered lattice of antidots (holes) act as an array of columnar pinning sites for the vortices and thus lead to vortex matching phenomena at commensurate fields guided by the lattice spacing. The strength and nature of vortex pinning is determined by the geometrical characteristics of the antidot lattice (such as the lattice spacing a(0), antidot diameter d, lattice symmetry, and orientation) along with the characteristic length scales of the superconducting thin films, viz., the coherence length (xi) and the penetration depth (lambda). There are at least two competing scenarios: (i) multiple vortices sit on each of the antidots at a higher matching period and (ii) there is nucleation of vortices at the interstitial sites at higher matching periods. Furthermore, it is also possible for the nucleated interstitial vortices to reorder under suitable conditions. We present our experimental results on NbN antidot arrays in the light of the above scenarios.

  • 出版日期2010-11-1