Theoretical study and optimization of a high power mid-infrared erbium-doped ZBLAN fibre laser  被引量:3

Theoretical study and optimization of a high power mid-infrared erbium-doped ZBLAN fibre laser

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作  者:李剑峰 Stuart D.Jackson 

机构地区:[1]School of Optoelectronic Information,University of Electronic Science and Technology of China [2]Institute of Photonics and Optical Science,School of Physics,University of Sydney

出  处:《Chinese Physics B》2011年第3期239-246,共8页中国物理B(英文版)

基  金:supported by the China Postdoctoral Science Foundation (Grant No. 20090451417);the China Postdoctoral Science Special Foundation (Grant No. 201003693);the Fundamental Research Funds for the Central Universities of China (Grant No. ZYGX2009J053);the National Natural Science Foundation of China (Grant No. 60736038)

摘  要:Based on the rate equations describing the erbium-doped fluoride glass (ZBLAN) fibre lasers with different pumping configurations being taken into account, this paper presents theoretical calculations related to the dynamic population density and the operation performance of a high power mid-infrared all-fibre erbium-doped ZBLAN fibre laser. It shows that the ground-state absorption, excited-state absorption and energy-transfer-upconversion processes co-exist and produce a population balance, causing the laser to operate stably at a continuous wave state. A good agreement between the theoretical results and recent experimental measurement is obtained. Furthermore, the laser structure parameters including fibre length, reflectance of output fibre Bragg grating and pumping configurations are quantitatively optimised to achieve the best performance. The results show, as expected, that the slope efficiency of the fibre laser can be improved significantly through optimisation, which then provides an important guide for the design of high-performance mid-infrared erbium-doped ZBLAN fibre lasers.Based on the rate equations describing the erbium-doped fluoride glass (ZBLAN) fibre lasers with different pumping configurations being taken into account, this paper presents theoretical calculations related to the dynamic population density and the operation performance of a high power mid-infrared all-fibre erbium-doped ZBLAN fibre laser. It shows that the ground-state absorption, excited-state absorption and energy-transfer-upconversion processes co-exist and produce a population balance, causing the laser to operate stably at a continuous wave state. A good agreement between the theoretical results and recent experimental measurement is obtained. Furthermore, the laser structure parameters including fibre length, reflectance of output fibre Bragg grating and pumping configurations are quantitatively optimised to achieve the best performance. The results show, as expected, that the slope efficiency of the fibre laser can be improved significantly through optimisation, which then provides an important guide for the design of high-performance mid-infrared erbium-doped ZBLAN fibre lasers.

关 键 词:Lerbium-doped fibre laser mid-infrared fibre laser ZBLAN fibre rate equations 

分 类 号:TN248[电子电信—物理电子学]

 

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