Numerical Study of High-Order Soliton Generation in Photonic Crystal Fibers: Effect of the Pulse Shape and Its Duration

Abstract

High-order soliton generation in photonic crystal fibers was simulated using split-step Fourier method (SSFM) and MATLAB. The input pulse shape was studied for various types, super-Gaussian, chirped and pulses obtained from a train of individual Gaussian pulses. The study shows that the order of soliton generated depends on pulse shape, input power and dispersion and nonlinear parameters of the photonic crystal fiber.

Country : Iraq

1 S. N. Abd Ali2 H. A. Sultan

  1. Department of Physics, College of Education for Pure Sciences, University of Basrah, Basrah, Iraq
  2. Department of Physics, College of Education for Pure Sciences, University of Basrah, Basrah, Iraq

IRJIET, Volume 6, Issue 8, August 2022 pp. 72-78

doi.org/10.47001/IRJIET/2022.608010

References

  1. Z. S. Abdul-Hussain, H. A. Sultan, A theoretical study of soliton in photonic crystal fibers, Researcher, 11(1), 11-14, (2019).
  2. M.S. Jasim, H.A. Sultan, C.A. Emshary, The effect of The Nonlinearities on Gaussian Pulse Propagation in Photonic crystal fiber, IOP Conf. Series: Materials Science and Engineering 571(2019) 012121, doi:10.1088/1757-899X/571/1/012121.
  3. Z. S. Abdul-Hussain, Theoretical Study of The propagation of isolated wave (soliton) in Photon Crystal Fibers, M.Sc. thesis, Basrah University, (2019). 
  4. Doaa Hussein Hashem, Theoretical Study of The propagation of Gaussian pulse in Photon Crystal Fibers and the factors Influencers, M.Sc. thesis, Basrah University, (2016).
  5. G. P. Agrawal, Nonlinear Fiber Optics, 2nd edition, Academic press, California, USA, (2007).
  6. Sneha Sharma, Dharmendra Kumar, Jitendra Kumar, “Wavelength-tunable ultra short soliton generation in gas filled kagome hollow core photonic crystal fiber “, 3rdInternational Conference on Microwave and photonics (ICMAP), 1-2, (2018).
  7. M.S. Jasim, H.A. Sultan, C.A. Emshary, The effect of attenuation and dispersion on the propagation of a short Gaussian pulse in optical fibers, Researcher, 11(1), 56-61, (2019).
  8. Muhammad Sufi Rosla, Kashif Tufail Chaudhary, Elham Mazalam, Saktioto Saktioto,(2020), Overview of temporal soliton transmission on photonic crystal Fiber and nanowires, Science, Technology & Communication journal 1(1), 16-19, (2020).
  9. Saili Zhao, Xiaohong Sun, Soliton dynamics in an all-normal-dispersion photonic crystal fiber with frequency-dependent Ker nonlinearity, Physical Review, 102(3), 033514, (2020).
  10. G Dhanu Krishna, VP Mahadevan Pillai, KG Gopchandran, Hybrid photonic crystal fiber with elliptical micro air hole as an efficient super continuum source, Optical Fiber Technology 56, 102198, (2020).
  11. Yunxia Yang, Hua Yang, Xiongfeng Tong, Saili Zhao, Shuyuan Chen, Influence of dispersion slope on soliton spectral tunneling in photonic crystal fiber, Optical Applicata, 51(3), (2021).
  12. Fan Sun, Propagation of soliton in optical fibers with generalized Kudryashov’s refractive index School of Mathematics and Statistic, Northeast Petroleum University, Daqing 163318, China, (2021).
  13. M.S. Jasim, H.A. Sultan, C.A. Emshary, Study the effect of some Photonic Crystal Arrangements on the Dispersion and Effective Refractive index of Photonic Crystal Fiber, International Journal of Science and Research (IJSR), 8(1), 1473-1476 (2019).