English

Mode-by-mode summation for the zero point electromagnetic energy of an infinite cylinder

High Energy Physics - Theory 2008-11-26 v3

Abstract

Using the mode-by-mode summation technique the zero point energy of the electromagnetic field is calculated for the boundary conditions given on the surface of an infinite solid cylinder. It is assumed that the dielectric and magnetic characteristics of the material which makes up the cylinder (ϵ1,μ1)(\epsilon_1, \mu_1) and of that which makes up the surroundings (ϵ2,μ2)(\epsilon_2, \mu_2) obey the relation ϵ1μ1=ϵ2μ2\epsilon_1\mu_1= \epsilon_2\mu_2. With this assumption all the divergences cancel. The divergences are regulated by making use of zeta function techniques. Numerical calculations are carried out for a dilute dielectric cylinder and for a perfectly conducting cylindrical shell. The Casimir energy in the first case vanishes, and in the second is in complete agreement with that obtained by DeRaad and Milton who employed a Green's function technique with an ultraviolet regulator.

Keywords

Cite

@article{arxiv.hep-th/9711168,
  title  = {Mode-by-mode summation for the zero point electromagnetic energy of an infinite cylinder},
  author = {Kimball A. Milton and A. V. Nesterenko and V. V. Nesterenko},
  journal= {arXiv preprint arXiv:hep-th/9711168},
  year   = {2008}
}

Comments

REVTeX, 16 pages, no figures and tables; transcription error in previous version corrected, giving a zero Casimir energy for a tenuous cylinder