Anisotropy and effective dimensionality crossover of the fluctuation conductivity of hybrid superconductor/ferromagnet structures
arXiv:1208.4562 · doi:10.1103/PhysRevB.86.134505
Abstract
We study the fluctuation conductivity of a superconducting film, which is placed to perpendicular non-uniform magnetic field with the amplitude induced by the ferromagnet with domain structure. The conductivity tensor is shown to be essentially anisotropic. The magnitude of this anisotropy is governed by the temperature and the typical width of magnetic domains . For the difference between diagonal fluctuation conductivity components along the domain walls and across them has the order of . In the opposite case for the fluctuation conductivity tensor reveals effective dimensionality crossover from standard two-dimensional behavior well above the critical temperature to the one-dimensional one close to for or to the dependence for . In the intermediate case for a fixed temperature shift from the dependence is shown to have a minimum at while is a monotonically increasing function.
11 pages, 8 figures