The angular dependence of the first-order phase transition (FOT) in the vortex lattice in Bi2Sr2CaCu2O8 crystals was investigated by a low frequency AC shielding technique (with the AC field ∥c), in which the static-field component parallel to c- (H⊥) was varied with the in-plane field H∥ held constant. The linear decrease of the FOT field H⊥FOT with increasing H∥ ends at a temperature--dependent critical value of H∥. A new transition, marked by the abrupt drop of the ab-plane shielding current, appears at this point. We draw a new phase diagram with H∥ and H⊥ field components as coordinates; this features at least two distinct regions in the vortex solid phase, that are determined by the different interplay between the pancake vortex-- and Josephson vortex lattice.
@article{arxiv.cond-mat/9912284,
title = {Melting of regular and decoupled vortex lattices in BSCCO crystals},
author = {M. Konczykowski and C. J. van der Beek and M. V. Indenbom and E. Zeldov},
journal= {arXiv preprint arXiv:cond-mat/9912284},
year = {2015}
}
Comments
2 pages, 2 figures Paper submitted to the conference proceedings of M2S-2000 Houston, TX