High extinction‐ratio microstructure fiber based on chalcogenide glasses

Extinction ratio (ER) is one of the important parameters to characterize the polarization‐maintaining (PM) performance of the fiber. In this paper, we report the preparation and properties of a novel chalcogenide microstructure fiber with a high ER. We fabricate a preform using a peeled‐off extrusio...

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Veröffentlicht in:Journal of the American Ceramic Society 2021-11, Vol.104 (11), p.5671-5678
Hauptverfasser: Xu, Tiesong, Zhong, Minghui, Liang, Xiaolin, Liu, Jia, Yan, Bin, Xiao, Jing, Jiao, Kai, Wang, Xiange, Si, Nian, Pan, Zhongda, Zhao, Zheming, Wang, Xunsi, Zhang, Peiqing, Nie, Qiuhua, Bai, Shengchuang, Wang, Rongping, Zhang, Junjie
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container_end_page 5678
container_issue 11
container_start_page 5671
container_title Journal of the American Ceramic Society
container_volume 104
creator Xu, Tiesong
Zhong, Minghui
Liang, Xiaolin
Liu, Jia
Yan, Bin
Xiao, Jing
Jiao, Kai
Wang, Xiange
Si, Nian
Pan, Zhongda
Zhao, Zheming
Wang, Xunsi
Zhang, Peiqing
Nie, Qiuhua
Bai, Shengchuang
Wang, Rongping
Zhang, Junjie
description Extinction ratio (ER) is one of the important parameters to characterize the polarization‐maintaining (PM) performance of the fiber. In this paper, we report the preparation and properties of a novel chalcogenide microstructure fiber with a high ER. We fabricate a preform using a peeled‐off extrusion method. The core and cladding material of the fiber are Ge9As23Se68 and Ge10As22Se68. The preform was drawn into a fiber with an average ER of −17.08 dB. The loss of the fiber is less than 2 dB over 5.20–8.55 μm, and the minimum loss of the fiber is 0.57 dB/m at 6.2 μm. Moreover, a flat mid‐infrared supercontinuum spectrum spanning from 1.53 to 12.50 μm is generated by pumping an 18‐cm‐long PM fiber for the first time.
doi_str_mv 10.1111/jace.17936
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subjects chalcogenide
Chalcogenides
Extinction
extinction ratio
Extrusion cladding
Infrared radiation
Microstructure
polarization‐maintaining
title High extinction‐ratio microstructure fiber based on chalcogenide glasses
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