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.
CITATION STYLE
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
Mendeley helps you to discover research relevant for your work.