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Dynamically and Thermally Nonequilibrium Fluctuation-Electromagnetic Interactions: Recent Results and Trends

arXiv:1912.04678 · doi:10.1142/S0217732320400131

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.

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)

References in corpus (2)

Dynamically and Thermally Nonequilibrium Fluctuation-Electromagnetic Interactions: Recent Results and Trends · wovepaper