English

Phonon-mediated Casimir interaction between finite mass impurities

Quantum Gases 2018-11-07 v1 Other Condensed Matter

Abstract

The Casimir effect, a two-body interaction via vacuum fluctuations, is a fundamental property of quantum systems. In solid state physics it emerges as a long-range interaction between two impurity atoms via virtual phonons. In the classical limit for the impurity atoms in DD dimensions the interaction is known to follow the universal power-law U(r)rDU(r)\sim r^{-D}. However, for finite masses of the impurity atoms on a lattice, it was predicted to be U(r)r2D1U(r)\sim r^{-2D-1} at large distances. We examine how one power-law can change into another with increase of the impurity mass and in presence of an external potential. We provide the exact solution for the system in one-dimension. At large distances indeed U(r)r3U(r)\sim r^{-3} for finite impurity masses, while for the infinite impurity masses or in an external potential it crosses over to U(r)r1U(r)\sim r^{-1} . At short distances the Casimir interaction is not universal and depends on the impurity mass and the external potential.

Keywords

Cite

@article{arxiv.1809.11071,
  title  = {Phonon-mediated Casimir interaction between finite mass impurities},
  author = {Andrei I. Pavlov and Jeroen van den Brink and Dmitri V. Efremov},
  journal= {arXiv preprint arXiv:1809.11071},
  year   = {2018}
}

Comments

5+7 pages, 5+6 figures

R2 v1 2026-06-23T04:22:09.710Z