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Influence of plasma inhomogeneity with allowance for bremsstrahlung on absorption of an Alfvén wave by a dissipative plasma
Author(s) -
А. А. Таюрский
Publication year - 2021
Publication title -
preprint/preprinty ipm im. m.v. keldyša
Language(s) - English
Resource type - Journals
eISSN - 2071-2901
pISSN - 2071-2898
DOI - 10.20948/prepr-2021-16
Subject(s) - physics , dissipative system , plasma , bremsstrahlung , penetration (warfare) , electron , atomic physics , absorption (acoustics) , electromagnetic electron wave , electromagnetic radiation , penetration depth , amplitude , ion , compressibility , waves in plasmas , quantum electrodynamics , mechanics , quantum mechanics , optics , operations research , engineering
The paper investigates a mathematical model of the absorption of an Alfvén wave in an inhomogeneous incompressible dissipative plasma using the equations of two-fluid electromagnetic hydrodynamics. It is shown that a consequence of taking into account bremsstrahlung is the finiteness of the penetration depth of the Alfvén wave into an inhomogeneous plasma and a steady quasi-stationary regime of the Alfvén wave absorption. Density inhomogeneities of two types are considered – hump and hollows, which are distributed according to the Gaussian law. The dependences on the value of the hump of the penetration depth of the Alfvén wave into the inhomogeneous plasma and the maximum temperatures of electrons and ions are obtained. The study showed that an increase in the amplitude of the incident wave leads to an increase in the maximum values of the electron and ion temperatures, as well as the depth of penetration of the Alfvén wave into an inhomogeneous dissipative plasma.

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