An Introduction to Plasma Physics and Its Space Applications, Volume 1

An Introduction to Plasma Physics and Its Space Applications, Volume 1
Author: Luis Conde
Publisher: Morgan & Claypool Publishers
Total Pages: 130
Release: 2018-12-11
Genre: Science
ISBN: 1643271741

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The growing number of scientific and technological applications of plasma physics in the field of Aerospace Engineering requires that graduate students and professionals understand their principles. This introductory book is the expanded version of class notes of lectures I taught for several years to students of Aerospace Engineering and Physics. It is intended as a reading guide, addressed to students and non-specialists to tackle later with more advanced texts. To make the subject more accessible the book does not follow the usual organization of standard textbooks in this field and is divided in two parts. The first introduces the basic kinetic theory (molecular collisions, mean free path, etc.) of neutral gases in equilibrium in connection to the undergraduate physics courses. The basic properties of ionized gases and plasmas (Debye length, plasma frequencies, etc.) are addressed in relation to their equilibrium states and the collisional processes at the microscopic level. The physical description of short and long-range (Coulomb) collisions and the more relevant collisions (elementary processes) between electrons' ions and neutral atoms or molecules are discussed. The second part introduces the physical description of plasmas as a statistical system of interacting particles introducing advanced concepts of kinetic theory, (non-equilibrium distribution functions, Boltzmann collision operator, etc). The fluid transport equations for plasmas of electron ions and neutral atoms and the hydrodynamic models of interest in space science and plasma technology are derived. The plasma production in the laboratory in the context of the physics of electric breakdown is also discussed. Finally, among the myriad of aerospace applications of plasma physics, the low pressure microwave electron multipactor breakdown and plasma thrusters for space propulsion are presented in two separate chapters.

Physics Of Space Plasmas

Physics Of Space Plasmas
Author: George Parks
Publisher: Westview Press
Total Pages: 616
Release: 2003-12-05
Genre: Science
ISBN: 9780813341293

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In its inaugural edition, Physics of Space Plasmas was the most widely used textbook for courses in space plasma physics, and included up-to-date observations from space available at the time. Throughout universities in the United States and abroad-it has proven itself indispensable. In the more than ten years since, an amazing number of new space plasma observations have been made. These more recent observations have revealed new and exciting information about space plasma. Now, incorporating new information from several NASA and ESA space missions, the completely revised second edition is expanded to include kinetic physics so that kinetic features in the plasma data can be explained more clearly. In addition, Parks now includes a clear and simple discussion of how electromagnetic fields behave in rotating frames. This thoroughly revised second edition retains the thoughtful examples and problems of the first edition and expands to include new examples, problem sets, schematic diagrams, and images that complement the new material.

Cross-Scale Coupling in Space Plasmas

Cross-Scale Coupling in Space Plasmas
Author: James L. Horwitz
Publisher: American Geophysical Union
Total Pages: 305
Release: 1995-01-09
Genre: Science
ISBN: 0875900755

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Published by the American Geophysical Union as part of the Geophysical Monograph Series, Volume 93. A principal goal of space plasma researchers is to understand the influence of various transport processes on each other, even when such processes operate at widely varying spatial and temporal scales. We know that large-scale plasma flows in space lead to unstable conditions with small spatial (centimeters to meters) and temporal (microseconds to seconds) scales. The large-scale flows, for example in the magnetosphere-ionosphere system, involve scale lengths of kilometers to several Earth radii and temporal scales of minutes to hours. We must know specific contextual answers to the questions: Do the small-scale waves (microprocesses) modify the large-scale flows? Do these modifications significantly affect the transport of mass, momentum, and energy? How can such coupling processes and their influences be revealed observationally? And, perhaps most challenging of all, how do we incorporate the microprocesses into theoretical models of larger-scale space plasma transport?

PHYSICS OF SPACE PLASMAS

PHYSICS OF SPACE PLASMAS
Author: MICHAEL TAYLOR
Publisher: Lulu.com
Total Pages: 61
Release:
Genre:
ISBN: 1105358925

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Physics of the Plasma Universe

Physics of the Plasma Universe
Author: Anthony L. Peratt
Publisher: Springer Science & Business Media
Total Pages: 373
Release: 2012-12-06
Genre: Science
ISBN: 1461227801

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During the past decade our understanding of plasma physics has witnessed an explosive growth due to research in two areas: work directed toward controlled nuclear fusion and work in space physics. This book addresses the growing need to apply these complementary discoveries to astrophysics. Today plasma is recognized as the key element to understanding the generation of magnetic fields in planets, stars and galaxies, the accel- eration and transport of cosmic rays, and many other phenomena occurring in interstellar space, in radio galaxies, stellar atmospheres, quasars, and so forth.

Waves in Dusty Space Plasmas

Waves in Dusty Space Plasmas
Author: Frank Verheest
Publisher: Springer Science & Business Media
Total Pages: 274
Release: 2012-12-06
Genre: Science
ISBN: 9401099456

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In this volume a thorough review is given of waves in dusty plasmas, a fascinating new domain combining plasmas and charged dust, two omnipresent ingredients of the Universe. Spokes and braids observed in the rings of Saturn cannot be explained by gravitation alone, but need the presence of charged dust. Other examples abound, as in zodiacal light, noctilucent clouds, comets and molecular clouds. After discussing charging mechanisms, supported by exciting new experiments, and space observations, the book describes extensions of known plasma modes covering the low frequencies typical for charged dust. Mixing detailed theoretical steps with summaries of expert contributions, a systematic multi-species treatment puts the literature in perspective, suitable also for newcomers. Typical complications like fluctuating dust charges, self-gravitational effects, and size distributions are dealt with, before ending with an outlook to future work and open questions. In this way, experts as well as interested newcomers will find a reliable guide, not just a compendium.

Space Plasmas

Space Plasmas
Author: Maha Ashour-Abdalla
Publisher: American Geophysical Union
Total Pages: 408
Release: 1995-01-09
Genre: Science
ISBN:

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Published by the American Geophysical Union as part of the Geophysical Monograph Series, Volume 86. This volume addresses the issue of achieving agreement between space observations and that body of plasma theory that attempts to account for the interrelations of plasma behavior and electromagnetic inhomogeneities and fluctuations. It is difficult to assign a single name to this area of research, because most of the terms that might be used have specific and limiting technical connotations. However, though a single name has not yet been found, we can say that the space plasma phenomena considered in this volume may all be characterized as fluctuating, nonequilibrium, or turbulent, and that the processes which play important roles in determining the plasma behavior are stochastic, quasilinear, nonlinear, inhomogeneous, or nonlocal.