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Gigahertz femtosecond laser-by a novel asymmetric one-dimensional photonic crystal saturable absorber device with defect layer

Authors :
Chun-Yu Song
Hua-Long Chen
Yong-Jie Wang
Liang Jin
Ying-Tian Xu
Lin-Lin Shi
Yong-Gang Zou
Xiao-Hui Ma
Yu-Feng Song
Cong Wang
Ya-Ting Zhang
Ja-Hon Lin
He Zhang
Han Zhang
Jian-Quan Yao
Source :
Nanophotonics. 11:2939-2951
Publication Year :
2022
Publisher :
Walter de Gruyter GmbH, 2022.

Abstract

High repetition frequency (HRF) ultrashort pulse fiber laser has been widely used in laser cold processing. The technical solutions such as short cavity length fiber laser have been proposed to achieve HRF ultrashort pulse output recently. However, the application of material-based saturable absorbers in this field has been astricted due to the low modulation depth, low damage resistance threshold, and high saturation fluence. Here, we designed a one-dimensional asymmetric photonic crystal with defect layer (1D-APCDL) as a novel saturable absorber, where the defect layer is Bi1.6Sb0.4Te3 with high modulation depth. The harmonic pulse with 3.82 GHz repetition frequency is achieved at the wavelength of 1562 nm, which is the highest repetition frequency of the topological insulator-based ring fiber laser so far to the best of our knowledge. The research provides a new saturable absorber solution, and provides a new idea for the application of material-based nonlinear optical chip in high-repetition frequency ultrashort pulse fiber lasers.

Details

ISSN :
21928614 and 21928606
Volume :
11
Database :
OpenAIRE
Journal :
Nanophotonics
Accession number :
edsair.doi...........1bf821c767593dac5a184f44b7d5a0ec
Full Text :
https://doi.org/10.1515/nanoph-2022-0145