Casimir Forces at Tricritical Points: Theory and Possible Experiments
Abstract
Using field-theoretical methods and exploiting conformal invariance, we study Casimir forces at tricritical points exerted by long-range fluctuations of the order-parameter field. Special attention is paid to the situation where the symmetry is broken by the boundary conditions (extraordinary transition). Besides the parallel-plate configuration, we also discuss the geometries of two separate spheres and a single sphere near a planar wall, which may serve as a model for colloidal particles immersed in a fluid. In the concrete case of ternary mixtures a quantitative comparison with critical Casimir and van der Waals forces shows that, especially with symmetry-breaking boundaries, the tricritical Casimir force is considerably stronger than the critical one and dominates also the competing van der Waals force.
Keywords
Cite
@article{arxiv.cond-mat/9703004,
title = {Casimir Forces at Tricritical Points: Theory and Possible Experiments},
author = {Uwe Ritschel and Markus Gerwinski},
journal= {arXiv preprint arXiv:cond-mat/9703004},
year = {2015}
}
Comments
18 pages, Latex, 3 postscript figures, uses Elsevier style files