Results 221 to 230 of about 116,508 (264)
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Laser plasma material interactions
AIP Conference Proceedings, 2004Surface treatment by means of pulsed laser beams in reactive atmospheres is an attractive technique to enhance the surface features, such as corrosion and wear resistance or the hardness. Many carbides and nitrides play an important role for technological applications, requiring the mentioned property improvements. Here we present a new promising fast,
Schaaf P, Carpene, E
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2009
Preface, D.A. Jaroszynski, R. Bingham, and R.A. Cairns Laser-Driven Plasmas: A Gateway to High Energy Density Physics and a Test-Bed for Nonlinear Science, W.L. Kruer An Experimentalist's Perspective on Plasma Accelerators, C.E. Clayton Waveguides for High Intensity Laser Pulses, S.
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Preface, D.A. Jaroszynski, R. Bingham, and R.A. Cairns Laser-Driven Plasmas: A Gateway to High Energy Density Physics and a Test-Bed for Nonlinear Science, W.L. Kruer An Experimentalist's Perspective on Plasma Accelerators, C.E. Clayton Waveguides for High Intensity Laser Pulses, S.
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Diagnostics of Laser-Plasma Interactions
2013The field of laser-plasma diagnostics is large, and is certainly too big to be covered fully in a short article. Here, we concentrate on a number of diagnostics which are of relevance to two areas of significant current interest, namely (1) relativistic laser-plasma interactions, and (2) hohlraum-driven inertial confinement fusion.
David Neely, Tim Goldsack
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Relativistic Laser-Plasma Interactions
AIP Conference Proceedings, 2009Ever since the much acclaimed paper of Akhiezer and Polovin [367], plasma theorists have been attempting to comprehend complex dynamics related to the propagation of high and ultra-high intensity electromagnetic (EM) radiation through a plasma.
Miloš M. Škorić +2 more
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The Physics of Laser Plasma Interactions
Journal of Modern Optics, 1989(1989). The Physics of Laser Plasma Interactions. Journal of Modern Optics: Vol. 36, No. 3, pp. 417-418.
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Relativistic Laser–Plasma Interaction
2010Sporadically, relativistic energies have been considered already in the foregoing chapters. As the laser flux density in the near infrared and visible long wavelength regime exceeds \(I\simeq 10^{18}\,{\textrm{Wcm}^{-2}}\), the electron quiver energy assumes relativistic values. A brief presentation of basic relativity may be useful here.
Peter Mulser, Dieter Bauer
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Relativistic Laser Plasma Interaction
2001The new technique of Chirped Pulse Amplification (CPA) allows to generate laser pulses with focussed intensities far above 1018W/cm2. It has opened a new branch of relativistic plasma physics.1 At intensities beyond 1018W/cm2, now available from table-top systems, the laser pulses self-focus in plasma channels, a few wavelengths in diameter, and ...
J. Meyer-ter-Vehn +2 more
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Investigation of Laser Plasma Interactions
2021Both short and long pulse laser plasma interactions are investigated by theoreti- cal analysis and modern computational techniques. An extensive set of simulations of short pulse laser plasma based particle accelerators are performed with the aim of improving performance and diagnostics of the accelerators.
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Applications of Laser–Plasma Interactions
2008Inertial Fusion Energy Kunioki Mima, Masakatsu Murakami, Sadao Nakai, and Shalom Eliezer Accelerators James Kogan X-Ray Sources Hiroaki Nishimura X-Ray Lasers Hiroyuki Daido, Tetsuya Kawachi, Kengo Moribayashi, and Alexander Pirozhkov Nuclear and Particle Physics with Ultraintense Lasers Jose Tito Mendonca and Shalom Eliezer Equations of State Shalom ...
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Proton Shock Acceleration in Laser-Plasma Interactions
Physical Review Letters, 2004The formation of strong, high Mach number (2-3), electrostatic shocks by laser pulses incident on overdense plasma slabs is observed in one- and two-dimensional particle-in-cell simulations, for a wide range of intensities, pulse durations, target thicknesses, and densities.
Luís O, Silva +6 more
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