Regular, Beating and Dilogarithmic Breathers in Biased Photorefractive Crystals

Author:

Betancur-Silvera Carlos Alberto1ORCID,Espinosa-Cerón Aurea2,Malomed Boris A.34ORCID,Fujioka Jorge1

Affiliation:

1. Instituto de Física, Departamento de Sistemas Complejos, Universidad Nacional Autónoma de México, P.O. Box 20-364, Mexico City 01000, Mexico

2. Facultad de Ciencias, Universidad Nacional Autónoma de México, Mexico City 04510, Mexico

3. Department of Physical Electronics, Faculty of Engineering, Tel Aviv University, Tel Aviv 69978, Israel

4. Instituto de Alta Investigación, Universidad de Tarapacá, Casilla 7D, Arica 1000000, Chile

Abstract

The propagation of light beams in photovoltaic pyroelectric photorefractive crystals is modelled by a specific generalization of the nonlinear Schrödinger equation (GNLSE). We use a variational approximation (VA) to predict the propagation of solitary-wave inputs in the crystals, finding that the VA equations involve a dilogarithm special function. The VA predicts that solitons and breathers exist, and the Vakhitov–Kolokolov criterion predicts that the solitons are stable solutions. Direct simulations of the underlying GNLSE corroborates the existence of such stable modes. The numerical solutions produce both regular breathers and ones featuring beats (long-period modulations of fast oscillations). In the latter case, the Fourier transform of amplitude oscillations reveals a nearly discrete spectrum characterizing the beats dynamics. Numerical solutions of another type demonstrate the spontaneous splitting of the input pulse in two or several secondary ones.

Funder

CONACYT

Israel Science Foundation

Publisher

MDPI AG

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