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The fluctuational electromagnetic interaction of a relativistic particle with a flat surface
Technical Physics Letters, 2003General relationships between the fluctuational electromagnetic field energy, tangential force, and heating rate of a relativistic neutral particle moving near a flat surface are established for the first time. Within the framework of the fluctuational electrodynamics, closed expressions describing these quantities are obtained for arbitrary ...
G. V. Dedkov, A. A. Kyasov
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Within the framework of the nonrelativistic fluctuation electromagnetic theory, relationships for the quadrupole-quadrupole contribution to the tangential and normal components of the force acting on a particle moving parallel to the polarizing surface are derived for the first time.
A. A. Kyasov, G. V. Dedkov
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Free Convection Boundary Layer on a Flat Plate due to Small Fluctuations in Surface Temperature
ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik, 1979AbstractUsing the method of matched asymptotic expansions the unsteady free convection boundary layer flow past a vertical flat plate is obtained when the plate temperature oscillates about a non‐zero mean. It is found that when the Prandtl number is not unity, the solution far downstream reveals a double boundary layer, the inner layer being a shear ...
Muhuri, P. K., Gupta, A. S.
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The problem concerning the fluctuation electromagnetic interaction of a neutral particle moving parallel to the boundary of a semi-infinite homogeneous isotropic medium characterized by a permittivity and permeability dependent on the frequency is considered in terms of the fluctuation electrodynamic theory within the relativistic formalism.
G. V. Dedkov, A. A. Kyasov
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Formulas for the rate of heating and the conservative and dissipative forces of interaction between a neutral spherical particle and the surface of a homogeneous semi-infinite polarizable medium are obtained for the first time in a nonrelativistic approximation of the fluctuational electromagnetic field theory for a particle moving in vacuum ...
G. V. Dedkov, A. A. Kyasov
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