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This article is cited in 31 scientific papers (total in 31 papers)
REVIEWS OF TOPICAL PROBLEMS
Fluctuation-electromagnetic interaction under dynamic and thermal nonequilibrium conditions
G. V. Dedkov, A. A. Kyasov Berbekov Kabardino-Balkarian State University, Nalchik
Abstract:
We systematically summarize theoretical developments related to the relativistic and nonrelativistic fluctuation-electromagnetic interaction of bodies of different temperatures moving translationally and (or) rotationally relative to one another. The small-particle–plate and small-particle–vacuum background configurations are considered as the basic ones. A method is presented for calculating the basic characteristics of this interaction: the conservative–dissipative forces and torques, the heating (cooling) rates, and the intensities of thermal and nonthermal radiation fluxes that arise under ‘Cherenkov friction’ conditions. Experimental results and possible applications are discussed.
Keywords:
fluctuation-electromagnetic interaction of moving bodies, Casimir friction, quantum friction, thermal and nonthermal radiation under translational–rotational motion of particles in a vacuum.
Received: August 1, 2016 Revised: November 28, 2016 Accepted: December 8, 2016
Citation:
G. V. Dedkov, A. A. Kyasov, “Fluctuation-electromagnetic interaction under dynamic and thermal nonequilibrium conditions”, UFN, 187:6 (2017), 599–627; Phys. Usp., 60:6 (2017), 559–585
Linking options:
https://www.mathnet.ru/eng/ufn5766 https://www.mathnet.ru/eng/ufn/v187/i6/p599
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