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Selective Compression of Temporally Splitted Femtosecond Pulses and Nonlinear Effects under Dynamical Bragg Diffraction in 1D Photonic Crystals

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Abstract

Temporal splitting of chirped femtosecond pulses and the Laue soliton propagation under the dynamical Bragg diffraction in the Laue scheme in 1D porous quartz-based photonic crystals are studied theoretically and experimentally. We have observed the selective compression of frequency-modulated splitted pulses, i., the compression of either the fast Borrmann or slow anti-Borrmann pulses, depending on the sign of the input signal frequency modulation.

© 2014 Optical Society of America

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