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High stability supercontinuum generation in lead silicate SF57 photonic crystal fibers
Authors:Zhu Xing-Ping  Li Shu-Guang  Du Ying  Han Ying  Zhang Wen-Qi  Ruan Yin-Lan  Heike Ebendorff-Heidepriem  Shahraam Afshar  Tanya M. Monro
Affiliation:a Key Laboratory of Metastable Materials Science and Technology, College of Science, Yanshan University, Qinhuangdao 066004, China;b The Institute for Photonics & Advanced Sensing, School of Chemistry & Physics, The University of Adelaide, Adelaide SA 5005, Australia
Abstract:We report supercontinuum (SC) generation in a lead silicate SF57 photonic crystal fiber by using a 1550 nm pump source. The effective nonlinear coefficient of the SF57 fiber is simulated to be 111.5 W-1·km-1 at 1550 nm. The fiber also shows ultraflat dispersion from 1700 nm to 2100 nm. Our results reveal that with increase of the average power of the incident pulse from 10 mW to 90 mW, the SC of the SF57 photonic crystal fiber is generated from 1300 nm to 1900 nm with high stability and without significant change in spectral broadening.
Keywords:photonic crystal fiber  nonlinear optics  supercontinuum generation
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