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1. 南开大学 物理学院, 天津 300071
2. 厦门大学 物理系,福建 厦门,361005
3. 厦门大学 电子工程系,福建 厦门 361005
收稿日期:2005-04-22,
修回日期:2006-04-18,
网络出版日期:2006-06-30,
纸质出版日期:2006-06-30
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刘丽飒, 张 磊, 蔡志平. CO2激光熔拉锥过程光功率控制研究[J]. 光学精密工程, 2006,14(3):368-371.
LIU Li-sa, ZHANG Lei, CAI Zhi-ping. CO2 laser fabrication of biconical-tapered fiber and its laser power controlling[J]. Optics and precision engineering, 2006, 14(3): 368-371.
基于CO
2
熔拉锥技术
对熔拉锥设备的控制方法进行了改进。利用柱体Mie散射公式计算光纤在加工过程中的光能利用率
结合Grellier的热传导模型
确定了加工过程中激光功率增长与光纤拉伸距离之间的对应关系。利用计算结果
采用分段直线递增的方法对激光功率进行控制
简化了仪器控制的难度。实验得到锥腰直径2~3 μm左右的熔锥光纤
锥腰和过渡区的形状和尺寸都得到了很好的控制。
Based on CO
2
laser fabrication of fused-fiber taper rig developed by E. D. Timothy in 1999
a shorter focused lens was used to improve the laser power controlling in the paper. The Mie theory of cylindrical structures and the heat transfer modeling proposed by A.J.C. Grellier was used to derive the increment relation of the laser power with the drawbench distance. The relation was in section increase linearly by degrees for laser power controlling
which simplifies the computer control of the rig. The fused biconical-tapered fibers with 2~3 μm diameter in the waist were obtained in the experi ment
it indicates the size and shape of biconical-tapered fiber is consistent with the predicted one well.
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. 帅词俊,段吉安,钟掘. 熔锥型光纤耦合器流变成形的工艺敏感性研究[J]. 光学 精密工程, 2005,31(1):40-46. SHUAI C J,DUAN J A,ZHONG J. Technical sensitiveness in the rheological manufacture progress o fused taper coupler[J]. Optics and Precision Engineering,2005,31(1):40-46.
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