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This article is cited in 12 scientific papers (total in 12 papers)
Nonlinear optical phenomena
Chirped elliptically polarised cnoidal waves and polarisation "chaos" in an isotropic medium with spatial dispersion of cubic nonlinearity
V. A. Makarovab, V. M. Petnikovaab, N. N. Potravkinab, V. V. Shuvalovab a Lomonosov Moscow State University, Faculty of Physics
b International Laser Center of Moscow State University
Abstract:
It is found that chirped elliptically polarised cnoidal waves can propagate and aperiodic regimes, resembling polarisation chaos, can emerge in an isotropic medium with local and nonlocal components of cubic nonlinearity and second-order frequency dispersion. In the particular case of the formation of the waveguides of the same profile for two circularly polarised components of the light field relevant analytical solutions are derived and the frequencies of chirped components are shown to vary in concord with periodic changes of their intensities. In this case, the nature of the changes in the polarisation state during the light wave propagation depends on the values of nonlinear phase shifts of circularly polarised components of the field during the period and is sensitive to changes in the initial conditions.
Keywords:
cubic nonlinearity, spatial dispersion, nonlinear Schrödinger equation, elliptical polarisation, cnoidal waves, chirp, polarisation chaos.
Received: 28.08.2012 Revised: 22.10.2012
Citation:
V. A. Makarov, V. M. Petnikova, N. N. Potravkin, V. V. Shuvalov, “Chirped elliptically polarised cnoidal waves and polarisation "chaos" in an isotropic medium with spatial dispersion of cubic nonlinearity”, Kvantovaya Elektronika, 42:12 (2012), 1118–1122 [Quantum Electron., 42:12 (2012), 1118–1122]
Linking options:
https://www.mathnet.ru/eng/qe14974 https://www.mathnet.ru/eng/qe/v42/i12/p1118
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