Laser-produced high-current relativistic electron beam

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In the first part of this PhD thesis, we present an interpretation of a part of experimental results of laser-produced electron beam transport in aluminium foil targets. We have estimated the fast electron beam characteristics and we demonstrated that the collective effects dominate the transport in the first tens of microns of propagation. These quantitative estimates were done with transport models already existing at the beginning of this thesis. These models are no longer sufficient in the case a fast electron beam propagation in insulator targets. Thus, in the second part, we have developed a propagation model of the beam that includes the effects of electric field ionization and the collisional ionization by the plasma electrons. We present estimates of the electron energy loss induced by the target ionization. For a low beam electron density, we demonstrated that the beam creates a plasma where the electons are not in a local thermodynamic equilibrium with ions. We have examined the beam stability and we demonstrated that transverse instabilities can be excited by the relativistic electron beam

Autorentext

Born in 1980 in Pau (France), Arnaud Debayle has completed his Ph.D. thesis in plasma physics in the University of Bordeaux, France, under the direction of Pr. V.T. Tikhonchuk from 2005 to 2008.

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Weitere Informationen

  • Allgemeine Informationen
    • Sprache Englisch
    • Herausgeber LAP LAMBERT Academic Publishing
    • Gewicht 334g
    • Untertitel Theoretical study of relativistic electron beam transport through solid targets
    • Autor Arnaud Debayle
    • Titel Laser-produced high-current relativistic electron beam
    • Veröffentlichung 21.01.2010
    • ISBN 3838340051
    • Format Kartonierter Einband
    • EAN 9783838340050
    • Jahr 2010
    • Größe H220mm x B150mm x T13mm
    • Anzahl Seiten 212
    • GTIN 09783838340050

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