Design of ultra-broadband and highly coherent MIR supercontinuum generation using a photonic crystal fiber
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s11082-024-06390-y.pdf
Reference30 articles.
1. Cheng, T., Kanou, Y., Xue, X., Deng, D., Matsumoto, M., Misumi, T., Suzuki, T., Ohishi, Y.: Mid-infrared supercontinuum generation in a novel AsSe2-As2S5 hybrid microstructured optical fiber. Opt. Express 22, 23019–23025 (2014)
2. Diouf, M., Salem, A.B., Cherif, R., Wague, A., Zghal, M.: High power broadband mid-infrared supercontinuum fiber laser using a novel chalcogenide AsSe2 photonic crystal fiber. Opt. Mater. 55, 10–16 (2016)
3. Diouf, M., Cherif, R., Ben Salem, A., Wague, A.: Ultra-broadband, coherent mid-IR supercontinuum expanding from 1.5 to 12.2 µm in new design of AsSe2 photonic crystal fibre. J. Mod. Opt. 64, 1335–1341 (2017)
4. Diouf, M., Mandeng, L.M., Tchawoua, C., Zghal, M.: Numerical investigation of supercontinuum generation through AsSe2/As2S5 chalcogenide photonic crystal fibres and rib structures. J. Light. Technol. 37, 5692–5698 (2019)
5. Domachuk, P., Wolchover, N.A., Cronin-Golomb, M., Wang, A., George, A.K., Cordeiro, C.M.B., Knight, J.C., Omenetto, F.G.: Over 4000 nm bandwidth of mid-IR supercontinuum generation in sub-centimeter segments of highly nonlinear tellurite PCFs. Opt. Express 16, 7161–7168 (2008)
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