Squeezing superfluid from a stone: Coupling superfluidity and elasticity in a supersolid
Abstract
In this work we start from the assumption that normal solid to supersolid (NS-SS) phase transition is continuous, and develop a phenomenological Landau theory of the transition in which superfluidity is coupled to the elasticity of the crystalline He lattice. We find that the elasticity does not affect the universal properties of the superfluid transition, so that in an unstressed crystal the well-known -anomaly in the heat capacity of the superfluid transition should also appear at the NS-SS transition. We also find that the onset of supersolidity leads to anomalies in the elastic constants near the transition; conversely, inhomogeneous strains in the lattice can induce local variations of the superfluid transition temperature, leading to a broadened transition.
Cite
@article{arxiv.cond-mat/0508271,
title = {Squeezing superfluid from a stone: Coupling superfluidity and elasticity in a supersolid},
author = {Alan T. Dorsey and Paul M. Goldbart and John Toner},
journal= {arXiv preprint arXiv:cond-mat/0508271},
year = {2013}
}
Comments
4 pages