Finding the elusive sliding phase in superfluid-normal phase transition smeared by c-axis disorder
Abstract
We consider a system composed of a stack of weakly Josephson coupled superfluid layers with c-axis disorder in the form of random superfluid stiffnesses and vortex fugacities in each layer as well as random inter-layer coupling strengths. In the absence of disorder this system has a 3D XY type superfluid-normal phase transition as a function of temperature. We develop a functional renormalization group to treat the effects of disorder, and demonstrate that the disorder results in the smearing of the superfluid normal phase transition via the formation of a Griffiths phase. Remarkably, in the Griffiths phase, the emergent power-law distribution of the inter-layer couplings gives rise to sliding Griffiths superfluid, with an anisotropic critical current, and with a finite stiffness in a-b direction along the layers, and a vanishing stiffness perpendicular to it.
Keywords
Cite
@article{arxiv.1003.4723,
title = {Finding the elusive sliding phase in superfluid-normal phase transition smeared by c-axis disorder},
author = {David Pekker and Gil Refael and Eugene Demler},
journal= {arXiv preprint arXiv:1003.4723},
year = {2011}
}
Comments
4+epsilon pages, 4 figures