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Plasma Physics

Author : B. Samuel Tanenbaum
Publisher :
Page : 388 pages
File Size : 46,58 MB
Release : 1967
Category : Science
ISBN :

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"This text on plasma physics is written for students at the senior or first-year graduate level ... It is intended to serve both as an introduction to the theory of plasmas for students planning to do further work in the subject and as a survey for students with out research interests who want to have some knowledge of plasmas"--Preface.

Quantum Plasmas

Author : Fernando Haas
Publisher : Springer Science & Business Media
Page : 215 pages
File Size : 10,22 MB
Release : 2011-08-27
Category : Science
ISBN : 1441982019

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This book provides an overview of the basic concepts and new methods in the emerging scientific area known as quantum plasmas. In the near future, quantum effects in plasmas will be unavoidable, particularly in high density scenarios such as those in the next-generation intense laser-solid density plasma experiment or in compact astrophysics objects. Currently, plasmas are in the forefront of many intriguing questions around the transition from microscopic to macroscopic modeling of charged particle systems. Quantum Plasmas: an Hydrodynamic Approach is devoted to the quantum hydrodynamic model paradigm, which, unlike straight quantum kinetic theory, is much more amenable to investigate the nonlinear realm of quantum plasmas. The reader will have a step-by-step construction of the quantum hydrodynamic method applied to plasmas. The book is intended for specialists in classical plasma physics interested in methods of quantum plasma theory, as well as scientists interested in common aspects of two major areas of knowledge: plasma and quantum theory. In these chapters, the quantum hydrodynamic model for plasmas, which has continuously evolved over the past decade, will be summarized to include both the development and applications of the method.

Physics of Quantum Electronics

Author : United States. Office of Naval Research
Publisher :
Page : 916 pages
File Size : 46,33 MB
Release : 1966
Category : Quantum electronics
ISBN :

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Relativistic Quantum Theory of Atoms and Molecules

Author : Ian P Grant
Publisher : Springer Science & Business Media
Page : 813 pages
File Size : 13,7 MB
Release : 2007-04-15
Category : Science
ISBN : 0387350691

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This book is intended for physicists and chemists who need to understand the theory of atomic and molecular structure and processes, and who wish to apply the theory to practical problems. As far as practicable, the book provides a self-contained account of the theory of relativistic atomic and molecular structure, based on the accepted formalism of bound-state Quantum Electrodynamics. The author was elected a Fellow of the Royal Society of London in 1992.

Plasma Electronics

Author : Toshiaki Makabe
Publisher : CRC Press
Page : 406 pages
File Size : 45,6 MB
Release : 2014-08-27
Category : Science
ISBN : 1482222108

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Beyond enabling new capabilities, plasma-based techniques, characterized by quantum radicals of feed gases, hold the potential to enhance and improve many processes and applications. Following in the tradition of its popular predecessor, Plasma Electronics, Second Edition: Applications in Microelectronic Device Fabrication explains the fundamental

Atoms, Solids, and Plasmas in Super-Intense Laser Fields

Author : Dimitri Batani
Publisher : Springer Science & Business Media
Page : 409 pages
File Size : 28,27 MB
Release : 2012-12-06
Category : Science
ISBN : 1461513510

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The recent developement of high power lasers, delivering femtosecond pulses of 20 2 intensities up to 10 W/cm , has led to the discovery of new phenomena in laser interactions with matter. At these enormous laser intensities, atoms, and molecules are exposed to extreme conditions and new phenomena occur, such as the very rapid multi photon ionization of atomic systems, the emission by these systems of very high order harmonics of the exciting laser light, the Coulomb explosion of molecules, and the acceleration of electrons close to the velocity of light. These phenomena generate new behaviour of bulk matter in intense laser fields, with great potential for wide ranging applications which include the study of ultra-fast processes, the development of high-frequency lasers, and the investigation of the properties of plasmas and condensed matter under extreme conditions of temperature and pressure. In particular, the concept of the "fast ignitor" approach to inertial confinement fusion (ICF) has been proposed, which is based on the separation of the compression and the ignition phases in laser-driven ICF. The aim of this course on "Atom, Solids and Plasmas in Super-Intense Laser fields" was to bring together senior researchers and students in atomic and molecular physics, laser physics, condensed matter and plasma physics, in order to review recent developments in high-intensity laser-matter interactions. The course was held at the Ettore Majorana International Centre for Scientific Culture in Erice from July 8 to July 14,2000.