Magnetic Field Effects in the Pseudogap Phase: A Precursor Superconductivity Scenario
Abstract
We demonstrate that the observed dependences of and on small magnetic fields can be readily understood in a precursor superconductivity approach to the pseudogap phase. In this approach, the presence of a pseudogap at (but not at ) and the associated suppression of the density of states lead to very different sensitivities to pair-breaking perturbations for the two temperatures. Our semi-quantitative results address the puzzling experimental observation that the coherence length is weakly dependent on hole concentration throughout most of the phase diagram. We present our results in a form which can be compared with the recent experiments of Shibauchi et al, and argue that orbital effects contribute in an important way to the dependence of .
Cite
@article{arxiv.cond-mat/0107614,
title = {Magnetic Field Effects in the Pseudogap Phase: A Precursor Superconductivity Scenario},
author = {Andrew P. Iyengar and Ying-Jer Kao and Qijin Chen and K. Levin},
journal= {arXiv preprint arXiv:cond-mat/0107614},
year = {2007}
}
Comments
6 pages, 1 figure, elsart.cls included. Submitted to the proceeding of SNS 2001, Chicago