Soliton Order Preservation for Self-Frequency Shift With High Efficiency and Broad Tunability
Author:
Affiliation:
1. Department of Electrical and Computer Engineering, McGill University, Montréal, QC, Canada
Funder
Natural Sciences and Engineering Research Council of Canada
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Atomic and Molecular Physics, and Optics
Link
http://xplorestaging.ieee.org/ielx7/50/10058093/09956890.pdf?arnumber=9956890
Reference25 articles.
1. High-energy and efficient Raman soliton generation tunable from 198 to 229 µm in an all-silica-fiber thulium laser system
2. nJ-class all-PM fiber tunable femtosecond laser from 1800 nm to 2050 nm via a highly efficient SSFS
3. High-efficiency tunable femtosecond solitons generation from 1.9 to 2.35 µm in a thulium-doped fiber amplifier via precise seed-pulse management
4. Enhanced tunable Raman soliton source between 19 and 236 μm in a Tm-doped fiber amplifier
5. Efficient generation of all-fiber femtosecond pulses at 1.7 μ m via soliton self-frequency shift
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2. Soliton self-frequency shift prediction in amplifying fibers using the moment method;Journal of the Optical Society of America B;2024-06-25
3. Near-infrared pumped, octave-tunable, on-chip mid-infrared Raman soliton source;Optics Express;2023-07-03
4. Coherent mid-infrared supercontinuum generation in a cascade of silica, fluoride, and chalcogenide fibers;CLEO 2023;2023
5. Soliton order preservation for high-efficiency and broadly tunable self-frequency shift;CLEO 2023;2023
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