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Titlebook: Laser-Plasma Interactions and Applications; Paul McKenna,David Neely,Dino Jaroszynski Book 2013 Springer International Publishing Switzerl

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Victor Malkarch worker. By the end of next week it will be in every course of graduate lectures. Within the month there will be a clamour to have it in the undergraduate c- riculum. Next year, I do believe, it will seem so commonplace that it may be assumed to be known by every schoolboy. “The process of advanc
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Theory of Underdense Laser-Plasma Interactions with Photon Kinetic Theoryiven by lasers in underdense plasmas to include the effects of broadband or partially incoherent radiation via generalised photon kinetic theory. After an introduction addressing the fundamental concepts underlying parametric instabilities, the key concepts and techniques of photon kinetic theory ar
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Theory of Laser-Overdense Plasma Interactions describe the phenomena of absorption and reflection of a short laser pulse in the interaction with over-dense plasma. In particular, a model of laser energy absorption for planar radiation of steep, high density plasma surfaces is presented. It is valid for arbitrary intensity and incidence angle.
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Shock Waves and Equations of State Related to Laser Plasma Interactionics and more. Laser induced shock waves techniques enable the study of equations of states and related properties, expanding the thermodynamic range reached by conventional gas gun shock waves and static loading experiments. Two basic techniques are used in laser-induced shock wave research, direct
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The Effect of a Radiation Field on Excitation and Ionisation in Non-LTE High Energy Density Plasmastermine the excitation and ionisation are presented together with a comparison between theory and experiment for a number of cases. In particular we look at so-called photo-ionised plasmas which are also of interest in astrophysics.
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Energetic Electron Generation and Transport in Intense Laser-Solid Interactionsof energetic (MeV) electrons. The physics of the generation and transport of this large current (multi-mega-Ampere) of fast electrons within the target is of fundamental importance to many topics in high intensity laser-solid interactions, including ion and radiation source development, warm dense m
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