DOE OSTI · 1842365
Low-threshold supercontinuum generation in polycrystalline media
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Abstract
Until recently, the generation of super-octave continua in bulk materials at full repetition rates of femtosecond (fs) oscillators has been limited to a few special cases of Kerr lens mode-locked Ti:sapphire lasers. In 2019, we described a 3.4-octave fs source with 50 nJ pulse energy at the repetition rate of 78 MHz based on polycrystalline Cr:ZnS [Vasilyev et al. , Optica 6 , 126 ( 2019 ) OPTIC8 2334-2536 10.1364/OPTICA.6.000126 ]. Here we explain the mechanism of fs supercontinuum generation in transition-metal doped polycrystalline II-VI semiconductors at relatively low (nJ-level) pulse energy. We demonstrate that this new supercontinuum regime is enabled by a complex, yet well-reproducible, interplay between the effects arising from the third-order nonlinearity, the quadratic nonlinearities, and thermal optical effects in the medium. We also demonstrate the control of fs pulse propagation in disordered χ <#comment/> ( 2 ) media via the control of the material microstructure.
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Vasilyev, Sergey (ORCID:0000000225203547), Gu, Jiahui (ORCID:000000019921265X), Mirov, Mike (ORCID:0000000252552021), Barnakov, Yury, Moskalev, Igor (ORCID:0000000288807831), Smolski, Viktor (ORCID:0000000157979879), Peppers, Jeremy (ORCID:0000000326287356), Kolesik, Miroslav, Mirov, Sergey (ORCID:0000000241868450), Gapontsev, Valentin. 2021-04-21. Low-threshold supercontinuum generation in polycrystalline media. https://doi.org/10.1364/josab.417485
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