English

Is zero-point energy physical? A toy model for Casimir-like effect

Quantum Physics 2017-08-23 v2 Other Condensed Matter High Energy Physics - Theory

Abstract

Zero-point energy is generally known to be unphysical. Casimir effect, however, is often presented as a counterexample, giving rise to a conceptual confusion. To resolve the confusion we study foundational aspects of Casimir effect at a qualitative level, but also at a quantitative level within a simple toy model with only 3 degrees of freedom. In particular, we point out that Casimir vacuum is not a state without photons, and not a ground state for a Hamiltonian that can describe Casimir force. Instead, Casimir vacuum can be related to the photon vacuum by a non-trivial Bogoliubov transformation, and it is a ground state only for an effective Hamiltonian describing Casimir plates at a fixed distance. At the fundamental microscopic level, Casimir force is best viewed as a manifestation of van der Waals forces.

Keywords

Cite

@article{arxiv.1702.03291,
  title  = {Is zero-point energy physical? A toy model for Casimir-like effect},
  author = {H. Nikolic},
  journal= {arXiv preprint arXiv:1702.03291},
  year   = {2017}
}

Comments

21 pages, version accepted for publication in Annals of Physics

R2 v1 2026-06-22T18:15:13.871Z