Dynamically and Thermally Nonequilibrium Fluctuation-Electromagnetic Interactions: Recent Results and Trends
Abstract
Our recent theoretical developments related to the nonrelativistic and relativistic fluctuation-electromagnetic interactions of bodies with different temperatures moving translationally and (or) rotationally relative to each other are briefly summarized. Three basic geometrical configurations and physical systems are discussed: "a small particle and a thick plate (i);"a small particle in radiation vacuum background" (ii), and "two thick plates in relative motion (iii) -classical Casimir-Lifshitz configuration with allowance for relative motion and different temperatures of plates. For the third configuration, it is shown that the theory of friction and heat exchange by Levin-Polevoi-Rytov proves to be quite adequate contrary to the settled point of view of many authors.
Keywords
Cite
@article{arxiv.1912.04678,
title = {Dynamically and Thermally Nonequilibrium Fluctuation-Electromagnetic Interactions: Recent Results and Trends},
author = {George Dedkov and Arthur Kyasov},
journal= {arXiv preprint arXiv:1912.04678},
year = {2020}
}
Comments
Comments: 6 pages, 2 figures; to appear in Mod. Phys. Lett. A; based on the talk presented at the "10th Alexander Friedmann International Seminar on Gravitation and Cosmology and 4th Symposium on the Casimir Effect" (Saint Petersburg, Russia, June 2019)