Large-mode-area single-mode-output Neodymium-doped silicate glass all-solid photonic crystal fiber

Author:

Li Wentao,Chen Danping,Qinling Zhou,Hu Lili

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference18 articles.

1. Chen, Y. et al. Analysis of a novel dual-mode large-mode-area micro-structured fiber. Acta Phys Sin-Ch Ed 63 (2014) 10.7498/Aps.63.014701.

2. Chen, M. Y., Gong, T. Y., Gao, Y. F. & Zhou, J. Design of single-mode large-mode area bandgap fibre with microstructured-core. Optics Communications 330, 117–121 (2014).

3. Barh, A., Ghosh, S., Varshney, R. K. & Pal, B. P. Ultra-large mode area microstructured core chalcogenide fiber design for mid-IR beam delivery. Optics Communications 311, 129–133 (2014).

4. Dahiya, V., Saini, T. S., Kumar, A., Rastogi, V. & Sinha, R. K. Large-core single-mode trench assisted leaky channel waveguide for high-power applications. Photonic Fiber And Crystal Devices: Advances In Materials And Innovations In Device Applications Vii 8847 (2013) 10.1117/12.2023466.

5. Cheng, G., D’Amico, C., Liu, X. & Stoian, R. Large mode area waveguides with polarization functions by volume ultrafast laser photoinscription of fused silica. Optics Letters 38, 1924–1926 (2013).

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