English

Distance-dependent sign-reversal in the Casimir-Lifshitz torque

Mesoscale and Nanoscale Physics 2018-04-04 v1 High Energy Physics - Theory Quantum Physics

Abstract

The Casimir-Lifshitz torque between two biaxially polarizable anisotropic planar slabs is shown to exhibit a non-trivial sign-reversal in its rotational sense. The critical distance aca_c between the slabs that marks this reversal is characterized by the frequency ωc ⁣ ⁣c/2ac\omega_c\!\sim \!c/2a_c at which the in-planar polarizabilities along the two principal axes are equal. The two materials seek to align their principal axes of polarizabilities in one direction below aca_c, while above aca_c their axes try to align rotated perpendicular relative to their previous minimum energy orientation. The sign-reversal disappears in the nonretarded limit. Our perturbative result, derived for the case when the differences in the relative polarizabilities are small, matches excellently with the exact theory for uniaxial materials. We illustrate our results for black phosphorus and phosphorene.

Keywords

Cite

@article{arxiv.1801.01183,
  title  = {Distance-dependent sign-reversal in the Casimir-Lifshitz torque},
  author = {Priyadarshini Thiyam and Prachi Parashar and K. V. Shajesh and Oleksandr I. Malyi and Mathias Boström and Kimball A. Milton and Iver Brevik and Clas Persson},
  journal= {arXiv preprint arXiv:1801.01183},
  year   = {2018}
}

Comments

6 pages, 5 figures, accompanied by a supplementary material