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Self-focusing and guiding of short laser pulses in ionizing gases and plasmas

IEEE Journal of Quantum Electronics · 1997 · Vol. 33(11) · pp. 1879–1914
E. EsareyP. SprangleJ. KrallA. Ting

Abstract

Several features of intense, short-pulse (/spl lsim/1 ps) laser propagation in gases undergoing ionization and in plasmas are reviewed, discussed, and analyzed. The wave equations for laser pulse propagation in a gas undergoing ionization and in a plasma are derived. The source-dependent expansion method is discussed, which is a general method for solving the paraxial wave equation with nonlinear source terms. In gases, the propagation of high-power (near the critical power) laser pulses is considered including the effects of diffraction, nonlinear self-focusing, ionization, and plasma generation. Self-guided solutions and the stability of these solutions are discussed. In plasmas, optical guiding by relativistic effects, ponderomotive effects, and preformed density channels is considered. The self consistent plasma response is discussed, including plasma wave effects and instabilities such as self-modulation. Recent experiments on the guiding of laser pulses in gases and in plasmas are briefly summarized.

Laser-Matter Interactions and ApplicationsLaser-Plasma Interactions and DiagnosticsAtomic and Molecular PhysicsPlasmaPonderomotive forceLaserIonizationPhysicsAtomic physicsSelf-focusingParaxial approximationPulse (music)Optics
Citations
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References
223
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References
Generation of ultrahigh peak power pulses by chirped pulse amplification
IEEE Journal of Quantum Electronics · 1988 · 925 citations
Ignition and high gain with ultrapowerful lasers*
Physics of Plasmas · 1994 · 2,985 citations
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