Decoupling and melting in a layered superconductor
Abstract
We report results for a 3D simulation of a layered superconductor. There are two significant temperatures. The first corresponds to melting of the vortex lattice in the a-b plane (T_ab) and the second to decoupling of the layers (T_dc) with T_ab \le T_ dc. The decoupling is found to be a first order transition with an associated entropy of ~0.25-0.4 k_B/pancake. The melting has no obvious thermodynamic signature, and could be a crossover. The width of the intermediate regime T_ab<T<T_dc, decreases with increasing anisotropy such that for the more anisotropic system we cannot distinguish the melting and decoupling temperatures.
Cite
@article{arxiv.cond-mat/9705265,
title = {Decoupling and melting in a layered superconductor},
author = {N. K. Wilkin and Henrik Jeldtoft Jensen},
journal= {arXiv preprint arXiv:cond-mat/9705265},
year = {2009}
}
Comments
4 pages, RevTeX. 3 Figures included. Paper available with complete figures at http://th.ph.bham.ac.uk/nkw/res/sup.ps