Microstructured fibers based on tellurite glass for nonlinear conversion of Mid-IR ultrashort optical pulses

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Abstract

Compact fiber-based sources generating optical pulses with a broadband spectrum in the mid-IR range are in demand for basic science and many applications. Laser systems producing tunable Raman solitons in special soft-glass fibers are of great interest. Here, we report experimental microstructured tellurite fibers and demonstrate by numerical simulation their applicability for nonlinear soliton conversion in the mid-infrared (-IR) range via soliton self-frequency shift. The fiber dispersion and nonlinearity are calculated for experimental geometry. It is shown numerically that there are two zero dispersion wavelengths for the core size of 2 μm and less. In such fibers, efficient Raman soliton tuning is attained up to a central wavelength of 4.8 μm using pump pulses at 2.8 μm.

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Anashkina, E. A., Dorofeev, V. V., Skobelev, S. A., Balakin, A. A., Motorin, S. E., Kosolapov, A. F., & Andrianov, A. V. (2020). Microstructured fibers based on tellurite glass for nonlinear conversion of Mid-IR ultrashort optical pulses. Photonics, 7(3). https://doi.org/10.3390/PHOTONICS7030051

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