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Optical solitons with bandwidth limited amplification in non-Kerr law media

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Języki publikacji
EN
Abstrakty
EN
This paper studies optical solitons with linear attenuation and bandpass filters. The Kerr and power laws of nonlinearity are considered. The governing equations are integrated by the aid of He's semi-inverse variational principle. The parameter domains are identified.
Czasopismo
Rocznik
Strony
801--809
Opis fizyczny
Bibliogr. 15 poz.
Twórcy
autor
autor
  • Department of Mathematical Sciences, Applied Mathematics Research Center, Center for Research and Education in Optical Sciences and Applications, Delaware State University, Dover, DE 19901-2277, USA
Bibliografia
  • [1] BISWAS A., KONAR S., Introduction to non-Kerr Law Optical Solitons, CRC Press, Boca Raton, FL,USA, 2006.
  • [2] BISWAS A., MILOVIC D., EDWARDS M.E., Mathematical Theory of Dispersion-Managed Optical Solitons, Springer Verlag, New York, USA, 2010.
  • [3] BISWAS A., REN H., KONAR S., Stochastic perturbation of non-Kerr law optical solitons,Optik 118(10), 2007, pp. 471–480.
  • [4] BISWAS A., MILOVIC D., MAJID F., KOHL R., Optical soliton cooling in a saturable law media,Journal of Electromagnetic Waves and Applications 22(13), 2008, pp. 1735–1746.
  • [5] GREEN P.D., MILOVIC D.M., LOTT D.A., BISWAS A., Dynamics of Gaussian optical solitons by collective variables method, Applied Mathematics and Information Sciences 2(3), 2008,pp. 259–273.
  • [6] GREEN P.D., BISWAS A., Bright and dark optical solitons with time-dependent coefficients in a non-Kerr law media, Communications in Nonlinear Science and Numerical Simulation 15(12),2010, pp. 3865–3873.
  • [7] HE J.H., Variational iteration method – a kind of non-linear analytical technique: Some examples,International Journal of Non-linear Mechanics 34(4), 1999, pp. 699–708.
  • [8] KOHL R., BISWAS A., MILOVIC D., ZERRAD E., Optical soliton perturbation in a non-Kerr law media,Optics and Laser Technology 40(4), 2008, pp. 647–662.
  • [9] KOHL R., MILOVIC D., ZERRAD E., BISWAS A., Optical solitons by He’s variational principle in a non-Kerr law media, Journal of Infrared, Millimeter and Terahertz Waves 30(5), 2009,pp. 526–537.
  • [10] MISHRA M., KONAR S., High bit rate dense dispersion managed optical communication systems with distributed amplification, Progress in Electromagnetics Research 78, 2008, pp. 301–320.
  • [11] KONAR S., KUMAR J., SEN P.K., Suppression of soliton instability by higher order nonlinearity in long haul optical communication systems, Journal of Nonlinear Optical Physics and Materials 8(4),1999, pp. 497–502.
  • [12] PANAJOTOVIC A., MILOVIC D., BISWAS A., Influence of even order dispersion on soliton transmission quality with coherent interference, Progress in Electromagnetics Research B 3, 2008, pp. 63–72.
  • [13] TOPKARA E., MILOVIC D., SARMA A.K., MAJID F., BISWAS A., A study of optical solitons with Kerr and power law nonlinearities by He’s variational principle, Journal of the European Optical Society 4, 2009, p. 09050.
  • [14] TRIPATHI R., GANGWAR R., SINGH N., Reduction of cross-talk in wavelength division multiplexed fiber optic communication systems, Progress in Electromagnetics Research 77, 2007, pp. 367–378.
  • [15] WAZWAZ A.-M., Exact solutions for the fourth order nonlinear Schrodinger equations with cubic and power law nonlinearities, Mathematical and Computer Modelling 43(7–8), 2006, pp. 802–808.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0014-0028
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