
TL;DR
This paper models the magnetic and current distributions of 2D pancake vortices in layered superconductors, analyzing electromagnetic interactions and the impact of interlayer coupling.
Contribution
It provides a detailed calculation of electromagnetic forces between pancake vortices and discusses effects of Josephson coupling in layered superconductors.
Findings
Calculated magnetic-field and current-density distributions for pancake vortices.
Analyzed electromagnetic forces between vortices in various stack configurations.
Discussed the influence of interlayer Josephson coupling on vortex behavior.
Abstract
I describe the magnetic-field and current-density distributions generated by two-dimensional (2D) pancake vortices in infinite, semi-infinite, and finite-thickness stacks of Josephson-decoupled superconducting layers. Arrays of such vortices have been used to model the magnetic structure in highly anisotropic layered cuprate high-temperature superconductors. I show how the electromagnetic forces between pancake vortices can be calculatated, and I briefly discuss the effects of interlayer Josephson coupling.
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