Magnetization, Nernst effect and vorticity in the cuprates
Abstract
Nernst and magnetization experiments reveal the existence of a large region of the cuprate phase diagram above the curve in which vorticity and weak diamagnetism exist without phase coherence. We discuss the implication that the transition at is caused by the loss of long-range phase coherence caused by spontaneous vortex creation. Below , these measurements provide an estimate of the depairing field which is found to be very large (40-100 T depending on doping). We discuss the high-field Nernst and magnetization results, binding energy, and the phase diagram of hole-doped cuprates. Some new magnetization results on the vortex liquid in very underdoped LSCO in the limit are reported as well.
Cite
@article{arxiv.cond-mat/0611731,
title = {Magnetization, Nernst effect and vorticity in the cuprates},
author = {Lu Li and Yayu Wang and M. J. Naughton and Seiki Komiya and Shimpei Ono and Yoichi Ando and N. P. Ong},
journal= {arXiv preprint arXiv:cond-mat/0611731},
year = {2015}
}
Comments
Symposium talk, Int. Conf. Magnetism Kyoto 2006, 6.3 pages, 7 figures