Mechanisms Of Spatio-Temporal Localization Of High-Intensive Femtosecond Pulses In Kerr Media: Light Bullet Scenarios

2017 CONFERENCE ON LASERS AND ELECTRO-OPTICS EUROPE & EUROPEAN QUANTUM ELECTRONICS CONFERENCE (CLEO/EUROPE-EQEC)(2017)

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摘要
Mechanisms of spatiotemporal localization of femtosecond powerful pulses, the problems and conditions of light bullets (LB) stability, being key issues for many applications, nowadays remain challenging and largely unresolved tasks. Therefore these questions attract much attention of scientists. As is known, in Kerr media the filamentation makes possible the generation of spatially and temporally compressed pulses. The filament is a self-organized structure formed through the competition of underlying processes such as, for example, diffraction, Kerr nonlinearity, photoinduced plasma, etc. Under anomalous group velocity dispersion (GVD) one of filamentation regimes may be realized, i.e. LB generation. As shown in experiment [1], the stability of the LB is due to their polychromatic Bessel-like structure consisting of a sharply localized high-intensity core and a weak, delocalized low-intensity periphery, which balances energy losses in the central core.
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关键词
spatiotemporal localization mechanisms,high-intensive femtosecond pulses,femtosecond powerful pulses,spatially compressed pulse generation,temporally compressed pulse generation,self-organized structure formed,light diffraction,Kerr nonlinearity,photoinduced plasma,anomalous group velocity dispersion,polychromatic Bessel-like structure,sharply localized high-intensity core,delocalized low-intensity periphery,balances energy losses,high-intensive light bullet,orbital angular momentum,modified nonlinear Schrödinger equation,electric field,kinetic equation,electron plasma density,conduction band
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