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Dispersion tuning and supercontinuum generating in novel W-typed chalcogenide fiber.

Authors :
Wang, Jinjing
Feng, Zan
Wang, Jun
Wu, Guolin
Liang, Xiaolin
Xiao, Jing
Xu, Tiesong
Zhong, Minghui
Liu, Jia
Wang, Xunsi
Zhao, Zheming
Zhang, Peiqing
Nie, Qiuhua
Wang, Rongping
Source :
Infrared Physics & Technology. Dec2020, Vol. 111, pN.PAG-N.PAG. 1p.
Publication Year :
2020

Abstract

Chalcogenide glass fiber usually possesses a single zero-dispersion wavelength (ZDW) that is more than 5 µm. Here, a novel W-typed double cladding chalcogenide glass fiber was designed and fabricated with optimized dispersion properties based on As 2 Se 3 -Ge 7 As 23 S 70 -Ge 10 As 23 Se 67 glasses. The results show that there are two ZDWs locating at near-infrared 2.95 µm and far-infrared 11.77 µm, and the dispersion less than 8 ps/km/nm at this range. Based on numerical simulation and viscosity analysis, a novel W-typed double-cladding fiber is fabricated via extrusion method, and the lowest loss of 1.15 dB/m is obtained at 5.68 µm. The optimized structure and dispersion distribution of the fiber ensure the excellent supercontinuum generation. When pumping at 3 µm near the first ZDW, a bandwidth supercontinuum (SC) spanning from 1 to 10.9 µm can be obtained. By pumping at 5 µm, a broad bandwidth of SC output from 1.3 to 13 µm can be obtained. This kind of low ZDW fiber has great potential for the generation of supercontinuum in the future. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13504495
Volume :
111
Database :
Academic Search Index
Journal :
Infrared Physics & Technology
Publication Type :
Academic Journal
Accession number :
147404497
Full Text :
https://doi.org/10.1016/j.infrared.2020.103538