Plasma induced pulse breaking in filamentary self-compression

Plasma induced pulse breaking in filamentary self-compression

C. Brée,Ayhan Demircan,Stefan Skupin,L. Bergé,G. Steinmeyer;C. Brée;Ayhan Demircan;Stefan Skupin;L. Bergé;G. Steinmeyer;
laser physics 2010 Vol. 20 pp. 1107-1113
192
steinmeyer2010laserplasma

Abstract

A plasma induced temporal break-up in filamentary propagation has recently been identified as one of the key events in the temporal self-compression of femtosecond laser pulses. An analysis of the Nonlinear Schrödinger Equation coupled to a noninstantaneous plasma response yields a set of stationary states. This analysis clearly indicates that the emergence of double-hump, characteristically asymmetric temporal on-axis intensity profiles in regimes where plasma defocusing saturates the optical collapse caused by Kerr self-focusing is an inherent property of the underlying dynamical model.

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