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Nd3+ doped multi-component phosphate glass multi-material fiber for a 1.05 μm laser

Tang, Guowu; Yang, Dongliang; Huang, Wenhua; Kuang, Ludong; Lin, Wei; Zhang, Yingtao; Zhang, Fangteng; Nie, Zhaogang*; Chen, Dongdan; Qian, Qi; Yang, Zhongmin
Science Citation Index Expanded
广东工业大学

摘要

Nd3+ doped multi-component phosphate glass was prepared by the conventional melt-quenching method. The absorption spectrum, emission spectrum, and fluorescence lifetime of the prepared glass were measured. Based on the absorption spectrum, Judd-Ofelt (J-O) intensity parameters, spectroscopic quality factor, absorption and emission cross-sections, and figure of merit were calculated and analyzed. What is more, multi-material fibers with Nd3+ doped multi-component phosphate glass core and silicate glass cladding were successfully drawn by using the molten core method. The Nd3+ doping concentration reaches as high as 3.82 x 10(20) ions/cm(3) (3.86 wt.%). More importantly, 1.05 mu m amplified spontaneous emission (ASE) was realized in a 4-cm-long as-drawn multi-material fiber when pumped by an 808 nm laser diode (LD). These results suggest that the Nd3+ doped multi-component phosphate glass multi-material fibers are promising gain material for 1.05 mu m fiber laser applications.

关键词

JUDD-OFELT ANALYSIS ABSORPTION INTENSITIES NARROW-LINEWIDTH ENERGY-TRANSFER CORE NM FLUORESCENCE EMISSION TM3+