Low temperature vortex liquid in $\rm La_{2-x}Sr_xCuO_4$
Abstract
In the cuprates, the lightly-doped region is of major interest because superconductivity, antiferromagnetism, and the pseudogap state \cite{Timusk,Lee,Anderson} come together near a critical doping value . These states are deeply influenced by phase fluctuations \cite{Emery} which lead to a vortex-liquid state that surrounds the superconducting region \cite{WangPRB01,WangPRB06}. However, many questions \cite{Doniach,Fisher,FisherLee,Tesanovic,Sachdev} related to the nature of the transition and vortex-liquid state at very low tempera- tures remain open because the diamagnetic signal is difficult to resolve in this region. Here, we report torque magnetometry results on (LSCO) which show that superconductivity is lost at by quantum phase fluctuations. We find that, in a magnetic field , the vortex solid-to-liquid transition occurs at field much lower than the depairing field . The vortex liquid exists in the large field interval , even in the limit 0. The resulting phase diagram reveals the large fraction of the - plane occupied by the quantum vortex liquid.
Cite
@article{arxiv.cond-mat/0702121,
title = {Low temperature vortex liquid in $\rm La_{2-x}Sr_xCuO_4$},
author = {Lu Li and J. G. Checkelsky and Seiki Komiya and Yoichi Ando and N. P. Ong},
journal= {arXiv preprint arXiv:cond-mat/0702121},
year = {2015}
}
Comments
6 pages, 4 figures, submitted to Nature Physics