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- W2743068218 abstract "Ytterbium-doped fiber laser (YDFL) and Thulium doped fiber laser (TDFL) have been two kinds of the most widelystudied fiber laser in recent years. Although both silica-based Ytterbium-doped fiber and Thulium doped fiber have wideemission spectrum band (more than 200 nm and 400 nm, respectively), the operation spectrum region of previouslydemonstrated high power YDFL and TDFL fall into 1060-1100 nm and 1900-2050nm. Power scaling of YDFL andTDFL operates at short-wavelength or long-wavelength band, especially for extreme wavelength operation, although ishighly required in a large variety of application fields, is quite challenging due to small net gain and strong amplifiedspontaneous emission (ASE). In this paper, we will present study on extreme wavelength operation of high power YDFLand TDFL in our group. Comprehensive mathematical models are built to investigate the feasibility of high poweroperation and propose effective technical methods to achieve high power operation. We have achieved (1) Diodepumped1150nm long wavelength YDFL with 120-watt level output power (2) Diode-pumped 1178nm long wavelengthYDFL operates at high temperature with 30-watt level output power (3) Random laser pumped 2153nm long wavelengthTDFL with 20-watt level output power (4) Diode-pumped 1018nm short wavelength YDFL with a record 2 kilowattoutput power is achieved by using home-made fiber combiner." @default.
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- W2743068218 date "2017-08-01" @default.
- W2743068218 modified "2023-09-26" @default.
- W2743068218 title "Exploring high power, extreme wavelength operating potential of rare-earth-doped silica fiber" @default.
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- W2743068218 doi "https://doi.org/10.1117/12.2269614" @default.
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