4 edition of **Fluctuations and non-linear wave interactions in plasmas** found in the catalog.

Fluctuations and non-linear wave interactions in plasmas

A. G. Sitenko

- 125 Want to read
- 4 Currently reading

Published
**1982** by Pergamon Press in Oxford, New York .

Written in English

- Plasma electrodynamics.,
- Nonlinear theories.

**Edition Notes**

Statement | by A.G. Sitenko ; translated by O.D. Kocherga. |

Series | International series in natural philosophy ;, v. 107 |

Classifications | |
---|---|

LC Classifications | QC718.5.E4 S5813 1982 |

The Physical Object | |

Pagination | xvi, 262 p. : |

Number of Pages | 262 |

ID Numbers | |

Open Library | OL4116690M |

ISBN 10 | 0080250513 |

LC Control Number | 80041990 |

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Fluctuations and Non-linear Wave Interactions in Plasmas talks about a theory of fluctuations in a homogenous plasma.

The title takes into consideration non-linear wave interactions. The text first presents the statistical description of plasma, and then proceeds to covering non-linear electrodynamic equations. After expounding on the quasilinear theory, which describes the effects of the first approximation in terms of the plasma wave energy, the nonlinear interaction of waves and particles is considered.

The last three chapters explore the theory of electromagnetic fluctuations in a plasma; the theory of scattering processes and the transformation of waves in a plasma; and the scattering of charged particles in a plasma.

Nonlinear Wave Interaction and Fluctuations in Plasmas A. Sitenko Institute for Theoretical Physics, Academy of Sciences of the Ukranian SSR, Kiev, USSR Received J I Abstract Basic principles are formulated of the non-linear fluctuation theory which is applied to study the electromagnetic fluctuations in a nonequi.

Basic principles are formulated of the non-linear fluctuation theory which is applied to study the electromagnetic fluctuations in a nonequilibrium (in particular, close to the instability range) plasma and their time evolution; peculiar features of the fluctuation spectra associated with particle collisions and non-linear wave interactions are discussed; resonances in non-linear plasmas and Cited by: Fluctuations and non-linear wave interactions in plasmas: Authors: Sitenko, A.

Affiliation: AA(Akademiia Nauk Ukrainskoi SSR, Institut Teoreticheskoi Fiziki, Kiev, Ukrainian SSR) Publication: Translation of Fluktuatsii i nelineinoe vzaimodeistvie voln v plazme.

Title: Book-Review - Fluctuation of Non-Linear Wave Interactions in Plasmas: Authors: Sitenko, A. G.; Mann, G. Publication: Astronomische Nachrichten, Vol. Issue. Topics of nonlinear theory and fluctuations are also discussed, giving attention to nonlinear waves in a collisionless plasma, the theory of plasma oscillations in the quasi-linear approximation, questions concerning nonlinear wave-particle interactions, fluctuations in a plasma, the scattering and the transformation of waves in a plasma, and the scattering of charged particles in a plasma.

Electromagnetic fluctuations in a nonequilibrium plasma are investigated taking into account nonlinear wave interactions. The spectral distribution of stationary field fluctuations is determined and the possibility of induced fluctuation enhancement by external fields is : A.

Sitenko. A rigorous and most general covariant kinetic formalism is developed to study the nonlinear waves interaction in relativistic Vlasov plasmas. The typical nonlinear plasma reaction is a nonlinear.

Specifically, the weak turbulence theory is presented as it is applied to electromagnetic wave-particle interactions, nonlinear wave-wave interactions, and nonlinear wave-particle interactions. This book is a useful reference for students and researchers in the study of classical physics and plasma Edition: 1.

Wave plasma interactions represent an ideal area for mutually beneficial collaborations between the inertial and magnetic fusion communities. The non-linear behavior of intense electromagnetic waves, the saturation mechanisms for unstable plasma waves, linear and non-linear wave-particle interactions, and relativistic plasma phenomena are clearlyFile Size: 71KB.

Fluctuations and Non-Linear Wave Interactions in Plasmas: International Series in Natural Philosophy - Kindle edition by Sitenko, A. G., Haar, D.

ter, O D Kocherga. Download it once and read it on your Kindle device, PC, phones or tablets. One cannot avoid the non-linear interactions of the turbulent and regular wave fields with the fields of these fluctuations and with the fluctuations in the index of refraction produced by the particle fluctuations.

To complete the discussion of the non-linear kinetics we must consider here the problems related to these non-linear : Vadim N. Tsytovich. Weakly Turbulent Nonlinear Wave-Particle Interactions in Space and Astrophysical Plasmas Peter H.

Yoon(1)(2)(3) ysis of electron beam-plasma interaction pertains to two prominent examples. One is the physical origin of non- Fluctuations and Non-Linear Wave In-teractions in Plasmas.

Get this from a library. Fluctuations and non-linear wave interactions in plasmas. [A G Sitenko]. The Nonlinear Optics of Plasmas C.

Joshi University of California, Los Angeles, Los Angeles, CAU.S.A. Received Abstract It is well known that plasmas exhibit many of the characteristics of a non-linear optical medium when intense electromagnetic waves are incident upon it.

In Part I of this work [Phys. Plasmas 2, ()], the behavior of linearly stable, integrable systems of waves in a simple plasma model was described using a Hamiltonian formulation. We study the non-linear beam splitter in matter-wave interferometers using ultracold quantum gases in a double-well configuration in presence of non-local interactions inducing inter-well density-density coupling, as they can be realized, e.g., with dipolar gases.

For some time now there has been an interest in the nop. linear interaction of electromagnetic waves in plasma [1,2].

But only in the last few years has the theory of nonlinear wave inter action effects undergone such vigorous development as to result in the formulation of clear phYSical concepts regarding the mech anisms of interaction.

Nonlinear instability and chaos in plasma wave-wave interactions. Introduction C. Kueny and P. Morrison Department of Physics and institute for Fusion Studies, The. @article{osti_, title = {Enhanced localized energetic ion losses resulting from first-orbit linear and non-linear interactions with Alfvén eigenmodes in DIII-D}, author = {Chen, Xi and Heidbrink, William W.

and Kramer, Gerrit J. and Van Zeeland, Michael A. and Pace, David C. and Petty, Craig C. and Fisher, Raymond K. and Nazikian, Raffi and Zeng, Lei and Austin, Max E. and Grierson. simultaneously, Alfvenic fluctuations have an important contribution to the high-frequency turbulence spectra, and the couplings reveal the electromagnetic character.

Multi-scale interactions via the nonlinear modulation process maybe enhance plasma transport and trigger sawtooth-crash by: 3. PROPAGATION OF ELECTRON PLASMA WAVES dealing with different aspects of linear and non-linear wave propagation in unmagnetized quantum plasmas.

For example, using the QHD model Haas et al have studied the important role of quantum diffraction in linear as well as non-linear regimes for the propagation of ion acoustic Size: KB.

In particular, non-ideal effects on the dispersion relation and absorption properties of linear and non-linear waves are included, such as ion-cyclotron effects, friction between the ionized plasma and a background gas of neutral atoms, and the interaction of the plasma with dust particles.

The book also surveys the theory of Alfvén and. Fluctuations and Non-linear Wave Interactions in Plasmas talks about a theory of fluctuations in a homogenous plasma. The title takes into consideration non-linear wave interactions. The text first presents the statistical description of plasma, and then proceeds to.

Fluctuations and Non-Linear Wave Interactions in Plasmas (International Series in Natural Philosophy, Volume ) (English and Russian Edition) (Russian) 1st Edition byFormat: Hardcover.

Conventional linear stability analyses may fail for fluid systems with an indefinite free‐energy functional. When such a system is linearly stable, it is said to possess negative energy modes. Instability may then occur either via dissipation of the negative energy modes, or nonlinearly via resonant wave–wave coupling, leading to explosive by: Digital Book format: PDF (Adobe DRM) Fluctuations and Non-linear Wave Interactions in Plasmas talks about a theory of fluctuations in a homogenous plasma.

The title takes into consideration non-linear wave interactions. The text first presents the statistical description of plasma, and then proceeds to covering non-linear electrodynamic equations.

@article{osti_, title = {Exchange interaction effects on waves in magnetized quantum plasmas}, author = {Trukhanova, Mariya Iv., E-mail: [email protected] and Andreev, Pavel A., E-mail: [email protected]}, abstractNote = {We have applied the many-particle quantum hydrodynamics that includes the Coulomb exchange interaction to magnetized quantum plasmas.

Plasma Electrodynamics, Volume 2: Non-Linear Theory and Fluctuations deals with the theory of nonlinear waves in a collisionless plasma, including the quasilinear theory, the theory of plasma turbulence, and the theory of electromagnetic fluctuations in a plasma.

Nonlinear wave-particle interactions are also discussed, along with scattering. The resolution of this dilemma that we propose here is that the non-linear wave–wave interactions produce a natural spread in wave dispersion, i.e.

growth or damping due to non-linear interactions causes a broadening in frequency in the dispersion relations and (Tsytovich).Cited by: 1 INTRODUCTION. Whistler wave regime is ubiquitously present in many space, astrophysical and laboratory plasmas.

For instance, in the magnetospheric plasma, electrons can be accelerated by whistler mode and compressional ULF (fast mode waves) turbulences near the Earth’s synchronous orbit (Li, Cao & Zhou ).The whistler mode turbulence can accelerate substorm Cited by: 5.

Unfortunately, this book can't be printed from the OpenBook. If you need to print pages from this book, we recommend downloading it as a PDF.

Visit to get more information about this book, to buy it in print, or to download it as a free PDF. Below is the uncorrected machine-read text. Abstract: We consider the interactions of a strong gravitational wave with electromagnetic fields using the 1+3 orthonormal tetrad formalism.

A general system of equations are derived, describing the influence of a plane fronted parallel (pp) gravitational wave on a cold relativistic multi-component by: Fluctuations in the scrape-off layer and conned plasma Typical edge proles of the ion saturation current density isat, electron temperature Te, ra-dial electric eld E r = f = r, poloidal E B velocity vp = E r=B T and E B shearing rate jw E B j = j vp = rj are shown in Fig.

1a) and b). In determination of the plasma File Size: KB. the need to include the effects of dust charge fluctuations as well as non-linear effects in subsequent treatments of dust acoustic waves [3]. The fact that the grain charge may be affected by the fluctuating wave potential is considered to be one of the unique features of a dusty plasma that distinguishes it from a multi-component by: 4.

There is a large variety of wave-particle interactions. They may occur in connection with linear plasma instabilities, leading to wave growth and damping, or take place in coherent or turbulent wave fields, leading to particle acceleration and heating.

Summary •Plasma is a quasi-neutral ionized gas moving under the influence of EM-fields. 1 Fundamentals of wave kinetic theory • Introduction to the subject • Perturbation theory of electrostatic fluctuations • Landau damping - mathematics • Physics of Landau damping • Unmagnetized plasma waves • The plasma dispersion function • The dielectric tensor of a magnetized plasma Introduction to the subject The most general theory of plasma waves uses kinetic theory.

U.S. University Research Centers with Technology Emphasis. Physics and Astronomy, University of California Los Angeles (plasma and environmental physics laboratory and HIPAS) toxic waste treatment, plasma centrifuge for radioactive materials separation, basic experiments on non-linear wave growth, beam plasma interactions, parametric instabilities, caviton collapse, RF heating, dusty plasmas.

Laser-plasma Interaction in Plasma In Plasma Channel and Relativistic Dynamics: G. Shvets: Carter, Troy. Experimental Studies of Fluctuations In a Reconnecting Current Sheet: M.

Yamada: Name Title Advisor(s) Karasik, Max. Driven Motion and Instability of an Atmospheric Pressure Arc: S. THE INTERACTION OF OCEAN WAVES AND WIND 3 wave interactions and dissipation due to white capping. In short, in order to show the practical value of the idea of the wave eﬀect on the airﬂow, the running of a wave model was required.

In the beginning of the ’s a spectral ocean wave .Klaus Hasselmann (born 25 October in Hamburg) is a leading German oceanographer and climate is probably best known for developing the Hasselmann model of climate variability, where a system with a long memory (the ocean) integrates stochastic forcing, thereby transforming a white-noise signal into a red-noise one, thus explaining (without special assumptions) the ubiquitous.wave-particle interactions charged particle trapping rich variety of waves for basic physics research (e.g., electron plasma, upper hybrid, lower hybrid, whistler, Alfven, drift, ion acoustic, ion cyclotron, electron cyclotron) ionospheric modification; active experiments in space plasmas light ion beam/plasma interactions (e.g., Li diagnostic.