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Nonlinear electrodynamics of the interaction of ultra-intense laser pulses with a thin foil

Physics of Plasmas · 1998 · Vol. 5(7) · pp. 2727–2741
В. А. ВшивковN. M. NaumovaФ. ПегорароS. V. Bulanov

Abstract

An analytical description of the interaction of laser light with a foil, described as a thin slab of overdense plasma, is presented together with the results of multidimensional particle in cell simulations. The matching conditions at the foil result in nonlinear boundary conditions for the wave equation. The conditions for relativistic transparency are given. The interaction with the foil leads to shaping of the laser pulse. In the case of oblique incidence of a relativistically intense pulse, nonlinear coupling modifies the pulse polarization and causes emission of high harmonics and generation of an electric current. Strong focalization of the reflected pulse, in particular in three-dimensional simulations, is observed for normal and oblique incidence due to the induced distortion of the foil surface.

Laser-Plasma Interactions and DiagnosticsLaser-Matter Interactions and ApplicationsLaser-induced spectroscopy and plasmaPhysicsFOIL methodLaserHarmonicsNonlinear systemPolarization (electrochemistry)PlasmaOpticsPulse (music)Atomic physics

Funding

  • Scuola Normale Superiore
  • Università di Pisa
Citations
313
FWCI
6.81
field-weighted impact
References
45
Percentile
96%
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Citations per year
References
Electrodynamics of Continuous Media
American Journal of Physics · 1961 · 10,810 citations
Ignition and high gain with ultrapowerful lasers*
Physics of Plasmas · 1994 · 2,985 citations
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