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Passively Q-switched ytterbium-doped fiber lasers(YDFLs) incorporating a molybdenum sulfide selenide(Mo SSe)-based saturable absorber(SA) are demonstrated. The modulation depth and saturation intensity of the Mo SSe-based SA are measured to be approximately 25.0% and 0.002 MW∕cm2, respectively, using the twin detector technique. The YDFL’s output has a center wavelength of 1038.5 nm with a top pulse width and energy of 1.2 μs and 18.9 nJ, respectively, at a pump power of 333 mW. The Mo SSe-based SA has a good linear optical response, providing significant opportunity for use in applications over an ultra-broadband spectrum, particularly spectroscopy and biomedical diagnostics.
Passively Q-switched Ytterbium-doped fiber lasers (YDFLs) incorporating a molybdenum sulfide selenide (Mo SSe) -based saturable absorber (SA) are demonstrated. The modulation depth and saturation intensity of the Mo SSe-based SA are measured approximately 25.0 % and 0.002 MW / cm2, respectively, using the twin detector technique. The YDFL’s output has a center wavelength of 1038.5 nm with a top pulse width and energy of 1.2 μs and 18.9 nJ, respectively, at a pump power of 333 mW. Mo SSe-based SA has a good linear optical response, providing significant opportunity for use in applications over an ultra-broadband spectrum, particularly spectroscopy and biomedical diagnostics.