Zobrazeno 1 - 8
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pro vyhledávání: '"I. V. Khazanov"'
Autor:
I. V. Khazanov
Publikováno v:
Journal of Experimental and Theoretical Physics Letters. 78:285-290
The mechanism of second harmonic generation in the presence of intense-radiation SBS in plasma is considered under the condition that the incident beam has no time for filamentation. The mechanism is based on the formation of low-frequency plasma-den
Autor:
G. A. Markov, I. V. Khazanov
Publikováno v:
Plasma Physics Reports. 28:274-285
The potentialities of the diagnostic method for determining the plasma parameters by recording the surface waves guided by a dielectric waveguide and scattered by plasma oscillations are discussed. The use of surface (slowed) waves makes it possible
Autor:
I. V. Khazanov, Yu. V. Rostovtsev
Publikováno v:
Journal of Experimental and Theoretical Physics. 86:93-100
In the context of the problem of stimulated scattering we discuss the mechanism of wavefront conjugation in an inhomogeneous plasma proposed relatively recently, associated with a difference in suppression of scattering (due to inhomogeneities) for t
Publikováno v:
Physics of Fluids B: Plasma Physics. 5:4347-4359
Possible nonlinear effects in electron‐cyclotron plasma production and heating by microwave radiation are analyzed. They include nonlinear regimes of electron acceleration in strong microwave fields under cyclotron resonance conditions, nonstationa
Publikováno v:
Radiophysics and Quantum Electronics. 19:880-883
Publikováno v:
Radiophysics and Quantum Electronics. 24:347-350
Publikováno v:
Radiophysics and Quantum Electronics. 28:428-435
This paper presents approximate analytical solutions, describing certain transient nonlinear regimes of the simulated thermal scattering of waves within the framework of an elementary plane-wave model. The interaction of oppositely traveling waves in
Autor:
I. V. Khazanov, Oleg L. Antipov
Publikováno v:
Radiophysics and Quantum Electronics. 30:39-45
Regimes of saturation of nonsteady, induced forward scattering of light in media with different types of nonlinearity (thermal, ionization, or striction) are investigated within the framework of the three-wave model. Approximate analytic solutions of