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1.
Influence of the skin effect on the absorption of electromagnetic radiation by a fine metal particle
The cross section of absorption of electromagnetic radiation by a fine spherical metal particle is calculated. The influence of the skin effect on the absorption cross-section is estimated for an arbitrary ratio between the free path and size of the particle. The results of this work are compared with those obtained earlier in the framework of classical electrodynamics. It is shown that taking into account the kinetic effects modifies essentially the known data for the skin effect in a spherical particle. 相似文献
2.
The magnetic absorption cross section of a small spherical particle with a dielectric core and a metallic shell is calculated. The general case is considered when the ratio of the radius of the dielectric core to the total radius of the particle may take arbitrary values. The condition of specular-diffuse reflection of conduction electrons from the surfaces of the metal layer of the particle is chosen as the boundary conditions of the problem. The limit cases are considered, and the results are discussed. 相似文献
3.
A model kinetic equation is constructed for the transport of a massless Bose gas. This equation is applied to solve the boundary
value problem for the transport of radiation in the half-space occupied by a dispersive medium that is in local thermal equilibrium
with the radiation. It is shown that the difference in temperature between the dispersive medium and the incident radiation
substantially depends on the character of the scattering properties of the particles in the medium.
Translated from Teoreticheskaya i Matematicheskaya Fizika, Vol. 111, No. 3, pp. 462–472, June, 1997. 相似文献
4.
A relaxation kinetic equation that describes the behavior of a Bose gas is derived. The Kramers half-space problem on isothermal slip is treated. An analytical solution and the number-of-particle distribution function for particles flying toward a wall, in explicit form, are obtained. The dependence of the slip velocity on the parameter that is the ratio of the chemical potential to the product of Boltzmann's constant by the absolute temperature is analyzed. The influence of the quantum effects on the isothermal slip coefficient is evaluated for He4. 相似文献
5.
The cross section of absorption of electromagnetic radiation by an inhomogeneous spherical particle is calculated. The general case of an arbitrary value of the ratio of the particle radius to the radius of the dielectric core is considered. The condition of diffuse reflection of electrons from the inner and outer surfaces of the metal layer of the particle is taken as the boundary condition of the problem. The limiting cases are considered and the results obtained are discussed. 相似文献
6.
The cross section of absorption of electromagnetic radiation by a fine spherical conducting particle is estimated in terms
of the classical kinetic theory of electrical conduction. The mixed diffuse-specular mechanism of charge carrier reflection
from the sample boundary is considered. A correlation between the coefficient of specular reflection and the absorption cross
section at different temperatures is analyzed. 相似文献
7.
An analytical solution of the Poiseuille problem is obtained over a wide range of Knudsen numbers for the case when the tangential
momentum accommodation coefficients of the channel walls are much less than unity. An expression for the mass flux is derived
that is valid for Knudsen numbers much smaller than the reciprocal of the accommodation coefficients. A new intermediate flow
regime, for which the mass flux is given by an expression that differs from the classical (macroscopic) form, is found to
exist.
Zh. Tekh. Fiz. 68, 27–31 (November 1998) 相似文献
8.
We set up model transport equations that describe the behavior of molecular (diatomic and polyatomic) gases with a molecule
collision rate proportional to the molecular velocity. In deriving these equations we allow for the internal (rotational)
degrees of freedom, while the vibrational degrees of freedom are assumed “frozen.” We also set up an exact equation for the
problem of the temperature jump with allowance for slow evaporation from the liquid surface into the saturated vapor atmosphere.
Finally, we derive explicit formulas for calculating the coefficients of the temperature jump and gas-density jump above a
flat surface and do the necessary numerical calculations.
Zh. éksp. Teor. Fiz. 114, 956–971 (September 1998) 相似文献
9.
The response of an electron plasma in a thin metallic slab to a variable electric field applied normally to the slab surface is studied in the framework of the kinetic theory. The radiation power absorbed by a unit surface area is calculated under the assumption that the electric field frequency is small compared with the plasma frequency and that electron scattering by the metal surface is of a purely diffuse character. 相似文献
10.
The distribution of electric current in a thin metal layer has been calculated for various specular reflection coefficients of its surfaces. The dependence of the conductivity on the distance from the lower surface of the layer has been analyzed. The Boltzmann kinetic equation in the relaxation time approximation has been used. 相似文献