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Saturday, April 25, 2020 | History

3 edition of Advanced Technologies Based on Wave and Beam Generated Plasmas (NATO Science Partnership Sub-Series: 3:) found in the catalog.

Advanced Technologies Based on Wave and Beam Generated Plasmas (NATO Science Partnership Sub-Series: 3:)

  • 7 Want to read
  • 14 Currently reading

Published by Springer .
Written in English

    Subjects:
  • Plasma physics,
  • Technology & Industrial Arts,
  • Nuclear Physics,
  • Engineering Mechanics,
  • Engineering Physics,
  • Technology,
  • Science/Mathematics,
  • Physics,
  • Engineering - Mechanical,
  • Science / Nuclear Physics,
  • Science-Nuclear Physics,
  • Science-Physics,
  • Technology / Engineering / Mechanical,
  • Engineering - General,
  • High technology,
  • Plasma engineering

  • Edition Notes

    ContributionsH. Schlüter (Editor), A. Shivarova (Editor)
    The Physical Object
    FormatHardcover
    Number of Pages584
    ID Numbers
    Open LibraryOL7808896M
    ISBN 10079235642X
    ISBN 109780792356424

    MAGPIE, stands for Mega Ampere Generator for Plasma Implosion Experiments, Marx generator MARAUDER, acronym of Magnetically Accelerated Ring to Achieve Ultra-high Directed Energy and Radiation Marchywka Effect.


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Advanced Technologies Based on Wave and Beam Generated Plasmas (NATO Science Partnership Sub-Series: 3:) Download PDF EPUB FB2

: Advanced Technologies Based on Wave and Beam Generated Plasmas (Nato Science Partnership Subseries: 3) (): H. Schlüter, A. Shivarova: Books. Advanced Technologies Based on Wave and Beam Generated Plasmas: Proceedings of the NATO Advanced Study Institute, Sozopol, Bulgaria, May June 1, Science Partnership Subseries: 3 Book 67) - Kindle edition by Schlüter, H., Shivarova, A.

Download it once and read it on your Kindle device, PC, phones or cturer: Springer. This volume is based on the lectures at the NATO Advanced Study Institute, entitled "Advanced Technologies Based on Wave and Beam Generated Plasmas", held at Sozopol, Bulgaria, from May 22 till June 1, It attracted almost.

Advanced Technologies Based on Wave and Beam Generated Plasmas book its topics the Advanced Study Institute constitutes the first attempt to bring together in an organized manner three areas of work on plasma technologies: advanced efforts based on wave generatedhigh frequency-plasmas, on plasma assisted ion implantation and on electron beam generated plasmas.

This book draws together three areas of work on plasma technologies: advanced efforts based on wave generated, high frequency plasmas, plasma assisted ion implantation, and electron beam generated plasma. It lays a foundation for the application of sources in industry and various research areas.

This book draws together three areas of work on plasma technologies: advanced efforts based on wave generated, high frequency plasmas, plasma Advanced Technologies Based on Wave and Beam Generated Plasmas book ion implantation, and electron beam generated plasma. Advanced technologies based on wave and beam generated plasmas.

Applications; G.W.M. Kroesen, et al. Ion Implantation. Plasma Based Ion Implantation; W. Moeller. Wave Generated Plasmas. Waveguide Stationary and Nonstationary Discharges: Modelling and Experiments; D. Grozev, et al.

Nonuniformity Aspects in Modelling and. Ivanov S.T. () Waves in Bounded Magnetized Plasmas. In: Schlüter H., Shivarova A. (eds) Advanced Technologies Based on Wave and Beam Generated Plasmas. NATO Cited by: 5. Advanced Technologies Based on Wave and Beam Generated Plasmas pp | Cite asCited by: 1.

A numerical model of surface-wave-produced plasmas in a diffusion-controlled regime is presented in this study. With the wide gas-pressure range (p=–5 Torr) considered in a combination with a frequency (f= MHz) in the rf-range, the model covers discharge maintenance under different conditions with respect to mechanisms of electron heating and Cited by: This volume is based on the lectures at the NATO Advanced Study Institute, entitled "Advanced Technologies Based on Wave and Beam Generated Plasmas", held at.

This volume is based on the lectures at the NATO Advanced Study Institute, entitled "Advanced Technologies Based on Wave and Beam Generated Plasmas", held at Author: Steffen Günther.

Abstract. Microwave plasma sources utilizing additionally electron resonance (ECR) for more efficient plasma production are becoming more and more interesting for various kinds of surface treatments, such as etching or thin-film deposition. This contribution gives first a brief survey of Advanced Technologies Based on Wave and Beam Generated Plasmas book pertaining physics of microwave coupling, propagation, Cited by: 1.

Benova E. () Excited Atoms and Charged Particles Axial Distributions in Argon Microwave Plasmas at Various Gas Pressures. In: Schlüter H., Shivarova A. (eds) Advanced Technologies Based on Wave and Beam Generated : Evgenia Benova.

Book Search tips Selecting this option will search all publications across the Scitation The radial structure of a plasma column sustained by a surface wave Moisan, J. Hubert, J. Margot, and Z. Zakrzewski, in Advanced Technologies Based on Wave and Beam Generated Plasmas, NATO ASI Partnership Subseries 3 Cited by: ECR Plasmas for Thin-Film Depostition.

In Advanced Technologies Based on Wave and Beam Generated Plasmas (pp. Kluwer Academic by: 1. Grosse, Untersuchungen an einem mikro-wellenangeregten Oberflächenwellenplasma in Argon (A Study of a Surface-wave Excited Plasma in Argon) Ph.D Thesis (Ruhr Universität Bochum, Bochum, ) ch.

6 (in German); English summary in Proceedings of NATO ASI Advanced Technologies Based on Wave and Beam Generated Plasmas, Sozopol, Cited by: 1. Introduction. Active research on the applications of surface-wave-sustained discharges (SWSDs) to plasma-processing technology, plasma chemistry, gas detoxification, light sources and laser physics, and elemental analysis has motivated recent studies,, on the stability properties of these discharges.

It has been shown that the diffusion-controlled regime of the Cited by: 6. The study presents a numerical fluid-plasma model of diffusion-controlled surface-wave-sustained discharges in helium gas.

The self-consistent behaviour of the discharge based on the interrelation between plasma density and Θ, the power absorbed on average by one electron, is nonlinear process of step ionization in the charged particle balance Cited by: Pelletier J, Lagarde T and Arnal Y Advanced Technologies Based on Wave and Beam Generated Plasmas ed H Schlüter and A Shivarova (Amsterdam: Kluwer) pp 97.

Grosse S English summary in Proc. NATO ASI Advanced Technologies Based on Wave and Beam Generated Plasmas (Sozopol, Bulgaria) NATO ASI Series, Partnership Subseries 3 High Technology ed H Schlüter and A Shivarova (Amsterdam: Kluwer, ) p Google ScholarCited by: In electron beam generated plasmas, plasma generation is confined to the beam volume and is largely independent of reactor geometry.

When the beam is magnetically confined, these plasmas exhibit excellent uniformity along the axis of beam propagation but have highly non-uniform charged particle density profiles normal to the beam by: 7. Grosse S Proc. NATO ASI Advanced Technologies Based on Wave and Beam Generated Plasmas (Sozopol, ) (NATO ASI Series, Partnership Subseries 3 High Technology) ed H Schlüter and A Shivarova (Amsterdam: Kluwer) p Cited by: Advanced thin film deposition processes have been developed and new technologies have been adapted to conventional deposition processes.

these species. Although a number of plasmas have been used in materials processing including arcs, flames, and electron beam-generated plasmas, the most common types are discharge plasmas, generated by.

Zakrzewski Z and Moisan M Advanced Technologies Based on Wave and Beam Generated Plasmas, NATO ASI Partnership Subseries 3 ed H Schluter and A Shivarova (Amsterdam: Kluwer) p Crossref Google ScholarCited by: 1. Based on Wave and Beam Generated Plasmas ed H Schlüter and A Shivarova (Kluwer, Dordrecht) Makasheva K and Shivarova A IEEE Trans.

Plasma Sci. 30 38 4Author: Lyubosvet Stoev. Excitation Equilibria in an Argon Surface-Wave-Produced and Sustained Plasmas. Advanced Technologies Based on Wave and Beam Generated Plasmas, eds. Schlüter and A. Shivarova (Kluwer. A resonant three‐wave interaction is established between the beam‐induced Langmuir wave, the plasma oscillations, and the ion acoustic wave.

Due to weak damping of the waves involved, this interaction persists after the beam has relaxed to a plateau and lasts as long as the latter by: 1. The book concludes with an up-to-date account of recent research on pulsed microwaves and the application of compact microwave plasmas for multi-element FIB.

It provides a consolidated and unified description of the emerging areas in plasma science and technology utilizing wave-based plasma sources based on the author’s own work and experience. 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.

A tuning system for large-area surface-wave plasma source is proposed. The system is based on T-junction tuning elements applied directly on the plasma-dielectric resonator and it.

PLASMA BT system is based on the focused advanced Plasma technology. The system can be used as Plasma Surgical and Plasma Shower treatment or the combination treatment. Tick this box if you do not want to receive exciting news and offers from Beamwave.

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Plasma-Based Glass Coatings You may now view any resource on the Advanced Energy site. Click the button below to view your requested resource. This list is generated based on data provided by CrossRef.

Bakhtiari, Farhad Yousefi, Masoud Golmohammady, Shole Jazayeri, Seyed Masoud and Ghafary, Bijan Generation of terahertz radiation by beating of two circular flat-topped laser beams in collisional by: 6. Atmospheric-pressure plasmas continue to attract considerable research interest due to their diverse applications, including high power lasers, opening switches, novel plasma processing applications and sputtering, EM absorbers and reflectors, remediation of gaseous pollutants, excimer lamps, and other noncoherent light sources.

Atmospheric-pressure plasmas in air are 5/5(1). @article{osti_, title = {Electron Beam Transport in Advanced Plasma Wave Accelerators}, author = {Williams, Ronald L}, abstractNote = {The primary goal of this grant was to develop a diagnostic for relativistic plasma wave accelerators based on injecting a low energy electron beam (keV) perpendicular to the plasma wave and observing the distortion of the electron beam.

Laser shock processing (LSP) is an advanced material surface hardening technology that can significantly improve mechanical properties and extend service life by using the stress effect generated by laser-induced plasma shock waves, which has been increasingly applied in the processing fields of metallic materials and alloys.

With the rapidly development of modern. Diagnostic and normalization techniques for laser-generated plumes based on beam deflection and photoacoustic wave measurements Guoying Chen Iowa State University Follow this and additional works at: Part of theAnalytical Chemistry CommonsAuthor: Guoying Chen.

The discharge is obtained with a surfatron at MHz in a fused silica or alumina tube at a maximum power of W. With atmospheric plasma technology, gas is excited by means of a high voltage under atmospheric pressure, such that a plasma is ignited.

The plasma is expelled by compressed air from the nozzle. In the low-pressure plasma technology, gas is excited in a vacuum by a supply of energy. This results in energetic ions and electrons, as well as other. Compact and affordable ion accelerators based pdf laser-produced plasmas have potential applications in many fields of science and medicine.

However, the requirement of producing focusable, narrow Cited by: A particle-beam weapon uses a high-energy beam of atomic download pdf subatomic particles to damage the target by disrupting its atomic and/or molecular structure.

A particle-beam weapon is a type of directed-energy weapon, which directs energy in a particular and focused direction using particles with minuscule particle-beam weapons have potential practical applications, e.g. [email protected]{osti_, title = {Advanced Accelerators: Particle, Ebook and Plasma Wave Interactions}, author = ebook, Ronald L.}, abstractNote = {The overall objective of this project was to study the acceleration of electrons to very high energies over very short distances based on trapping slowly moving electrons in the fast moving potential wells of large amplitude plasma .