Natural Science

Natural Science

ISSN Print: 2150-4091
ISSN Online: 2150-4105
www.scirp.org/journal/ns
E-mail: ns@scirp.org
has been cited by the following article(s):
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[1] Numerical exploration of coherent supercontinuum generation in multicomponent GeSe2-As2Se3-PbSe chalcogenide based photonic crystal fiber
2020
[2] Hybrid photonic crystal fiber with elliptical micro air hole as an efficient supercontinuum source
2020
[3] Computational design & analysis of GeSe2-As2Se3-PbSe based rib waveguide for mid-infrared supercontinuum generation
2020
[4] Analysis of photonic crystal fiber with silicon core for efficient supercontinuum generation
2019
[5] Near Infrared Supercontinuum Generation in Silica Based Photonic Crystal Fiber
2019
[6] A Dispersion Engineered Silica-Based Photonic Crystal Fiber for Supercontinuum Generation in Near-Infrared Wavelength Region
2019
[7] Computational Modeling of Tellurite Based Photonic Crystal Fiber for Infrared Supercontinuum Generation
2019
[8] Supercontinuum generated high power highly nonlinear photonic crystal fiber for medical and optical communications applications
2018
[9] Supercontinuum generation in silica photonic crystal fiber at 1.3 μm and 1.65 μm wavelengths for optical coherence tomography
Optik, 2018
[10] High Power Highly Nonlinear Holey Fiber with Low Confinement Loss for Supercontinuum Light Sources
2018
[11] Investigation on chalcogenide and silica based photonic crystal fibers with circular and octagonal core
AEU - International Journal of Electronics and Communications, 2017
[12] Generation of supercontinuum light in micro-structured fiber and polarization study at different wavelengths
2016
[13] Investigación de la polarización de una fuente de luz supercontinua en fibras de cristal fotónico
2016
[14] Investigación de la polarización de una fuente de luz supercontinua en fibras de cristal fotónico TESIS PROFESIONAL
2016
[15] Grade-2 Teflon (AF1601) PCF for optical communication using 2D FDTD technique: a simplest design
Journal of Modern Optics, 2015
[16] Comparative study of octagonal ring photonic crystal fiber with GeO 2 doped structure
Information Communication and Embedded Systems (ICICES), 2014 International Conference on, 2014
[17] Comparative study of octagonal ring photonic crystal fiber with GeO2 doped structure
2014
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