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Noureddine Cherkaoui Eddeqaqi

Researcher at University of Yaoundé I

Publications -  9
Citations -  90

Noureddine Cherkaoui Eddeqaqi is an academic researcher from University of Yaoundé I. The author has contributed to research in topics: Metamaterial & Electromagnetic radiation. The author has an hindex of 5, co-authored 9 publications receiving 68 citations.

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Rogue wave train generation in a metamaterial induced by cubic-quintic nonlinearities and second-order dispersion.

TL;DR: It clearly appears that rogue wave behavior strongly depends on the frequency and the regime considered, and the stability conditions of the electromagnetic wave have also been discussed at frequency ranges considered for both negative index and absorption regimes.
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Optical rogue waves generation in a nonlinear metamaterial

TL;DR: In this paper, the behavior of a nonlinear Schrodinger equation with cubic-quintic nonlinearities, second-and third-order dispersion effects was investigated for negative index regime.
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Efficient method of calculation of Raman soliton self-frequency shift in nonlinear optical media

TL;DR: In this article, a method to evaluate Raman soliton self-frequency shift of soliton light pulses solution for higher-order nonlinear Schrodinger equation with non-Kerr nonlinearity which propagate in high-bit-rate optical systems is presented.
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Kuznetsov-Ma waves train generation in a left-handed material

TL;DR: In this paper, the behavior of an electromagnetic wave propagating in a left-handed material is modeled by a nonlinear Schrodinger equation which is solved by collective coordinates theory in order to characterize the light pulse intensity profile.
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Nonlinear surface waves at ferrite-metamaterial waveguide structure

TL;DR: In this article, the dispersion properties of the nonlinear surface waves were analyzed and the associated propagation index and the film-cover interface nonlinearity were calculated for a new ferrite slab made of a metamaterial (MTM) surrounded by a nonlinear cover cladding and a ferrite substrate.