Paper
24 June 2019 Propagation of non-dispersive soliton-like vortexes in the optical segment of radio-over-fiber systems in the range 75-110 GHz
Author Affiliations +
Proceedings Volume 11146, Optical Technologies for Telecommunications 2018; 1114607 (2019) https://doi.org/10.1117/12.2526789
Event: XVI International Scientific and Technical Conference on Optical Technologies in Telecommunications, 2018, Ufa, Russian Federation
Abstract
In this article the propagation of soliton-like vortexes in the optical segment of Radio-over-Fiber system is considered. The approach is based on solution of nonlinear Schrödinger equation (NSE) for Kerr-type nonlinear medium. A numerical NSE solution for vortex solitons was obtained; simulation of the soliton-like vortexes propagation over an optical fiber was performed. Moreover, a phase-amplitude filter forming optical signals with a set orbital angular momentum state and polarization conserving during propagation through an optical fiber was simulated. The calculation of amplitude-phase filter was conducted based on spinor representation of Maxwell’s equations.
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Irina L. Vinogradova, Azat R. Gizatulin, Ivan K. Meshkov, Elizaveta P. Grakhova, Guzel I. Abdrakhmanova, Valeriy Kh. Bagmanov, and Albert Kh. Sultanov "Propagation of non-dispersive soliton-like vortexes in the optical segment of radio-over-fiber systems in the range 75-110 GHz", Proc. SPIE 11146, Optical Technologies for Telecommunications 2018, 1114607 (24 June 2019); https://doi.org/10.1117/12.2526789
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KEYWORDS
Optical fibers

Polarization

Wave propagation

Solitons

Radio optics

Radio over Fiber

Optical filters

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