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Dual-wavelength pumped highly birefringent microstructured silica fiber for widely tunable soliton self-frequency shift

Authors :
Szewczyk, Olga
Pala, Piotr
Tarnowski, Karol
Olszewski, Jacek
Vieira, Francisco Senna
Lu, Chuang
Foltynowicz, Aleksandra
Mergo, Pawel
Sotor, Jaroslaw
Sobon, Grzegorz
Martynkien, Tadeusz
Source :
Journal of Lightwave Technology 39, 3260-3268, 2021
Publication Year :
2020

Abstract

We report the design of a microstructured silica-based fiber for widely tunable soliton self-frequency shift, suitable for pumping with two most common fiber laser wavelengths: 1.04 {\mu}m and 1.55 {\mu}m. Depending on the pump source, the output spectrum can be continuously tuned up to 1.67 {\mu}m (pump at 1.04 {\mu}m) or 1.95 {\mu}m (pump at 1.55 {\mu}m) in the same 1.5 m-long fiber sample, with pump-to-soliton conversion efficiency higher than 20%. The fiber is highly birefringent, which results in an excellent polarization extinction ratio of the soliton, reaching 26 dB. The shifted solitons have a high degree of coherence confirmed by pulse-to-pulse interference measurement. The available soliton tuning range covers the wavelengths inaccessible for fiber lasers, e.g., 1.3 {\mu}m and 1.7 {\mu}m, highly important for multi-photon microscopy and imaging. Our work shows that it is possible to design and fabricate one universal optical fiber that supports soliton shift when pumped at two different wavelengths separated by over 500 nm.

Subjects

Subjects :
Physics - Optics

Details

Database :
arXiv
Journal :
Journal of Lightwave Technology 39, 3260-3268, 2021
Publication Type :
Report
Accession number :
edsarx.2011.14179
Document Type :
Working Paper
Full Text :
https://doi.org/10.1109/JLT.2021.3057657