Incoherent Shock and Collapse Singularities in Non-Instantaneous Nonlinear Media
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Titre | Incoherent Shock and Collapse Singularities in Non-Instantaneous Nonlinear Media |
Type de publication | Journal Article |
Year of Publication | 2018 |
Auteurs | Xu G, Fusaro A, Garnier J, Picozzi A |
Journal | APPLIED SCIENCES-BASEL |
Volume | 8 |
Pagination | 2559 |
Date Published | DEC |
Type of Article | Article |
ISSN | 2076-3417 |
Mots-clés | Coherence, non-linear waves, optical turbulence, partially coherent beams and pulses, rogue waves, shockwaves, Vlasov formalism |
Résumé | We study the dynamics of a partially incoherent optical pulse that propagates in a slowly responding nonlinear Kerr medium. We show that irrespective of the sign of the dispersion (either normal or anomalous), the incoherent pulse as a whole exhibits a global collective behavior characterized by a dramatic narrowing and amplification in the strongly non-linear regime. The theoretical analysis based on the Vlasov formalism and the method of the characteristics applied to a reduced hydrodynamic model reveal that such a strong amplitude-incoherent pulse originates in the existence of a concurrent shock-collapse singularity (CSCS): The envelope of the intensity of the random wave exhibits a collapse singularity, while the momentum exhibits a shock singularity. The dynamic behavior of the system after the shock-collapse singularity is characterized through the analysis of the phase-space dynamics. |
DOI | 10.3390/app8122559 |