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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Efficient coupling and relaxed alignment tolerances in pigtailing of a laser diode using dual ball lenses
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Efficient coupling and relaxed alignment tolerances in pigtailing of a laser diode using dual ball lenses

机译:使用双球形透镜在激光二极管的尾纤中的有效耦合和宽松的对准公差

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摘要

In this paper, we report an efficient coupling scheme with relaxed misalignment tolerances. The proposed coupling scheme consists of two ball lenses of same diameter (1 mm) and different refractive indices. The second ball lens which is facing the fiber tip has a higher refractive index (1.833), whereas the first one which faces the laser diode has a refractive index of 1.5. Employing Gaussian and ABCD ray tracing optics, the theoretically obtained coupling efficiency can reach a unity with relaxed working distance (separation of the coupling system from the fiber tip) in the range between 1 and 4 mm at some optimum positions of the coupling lenses with regard to each other and to the facet of the laser diode. It has been found that if the distance between the first ball lens and the laser diode (d(1)) is fixed at 1.1 mm, which is twice its focal length, the coupling efficiency and the working distance as well as the misalignment tolerances are greatly affected by variation of the separation between the two ball lenses (s), and for this proposed coupling scheme the highest coupling efficiency and largest working distance are obtained when s is in the range of 0.3-0.35mm. Above and below this range there is a significant reduction in the values of the above-mentioned parameters. Experimentally, the Nd:YAG laser welding system has been used for the alignment and welding of the coupling components in a butterfly configuration; the experimentally obtained coupling efficiency of the proposed coupling system was around 75% with relaxed working distance. From the effect of lateral and angular offsets on coupling efficiency, it is clearly noticed that the mode field of laser diode is transformed from elliptical into circular and hence effectively matched with that of the single-mode fiber.
机译:在本文中,我们报告了一种有效的耦合方案,具有宽松的未对准公差。提出的耦合方案由两个直径相同(1毫米)且折射率不同的球形透镜组成。面对光纤尖端的第二个球形透镜的折射率较高(1.833),而面对激光二极管的第一个球形透镜的折射率为1.5。使用高斯和ABCD光线追踪光学系统,在耦合透镜的某些最佳位置上,理论上获得的耦合效率可以在1-4 mm范围内的松弛工作距离(耦合系统与光纤尖端的分离)的范围内达到统一。彼此和激光二极管的小面。已经发现,如果第一球形透镜和激光二极管之间的距离(d(1))固定为1.1毫米,是其焦距的两倍,则耦合效率和工作距离以及未对准公差为极大地受两个球形透镜之间间距变化的影响,对于此建议的耦合方案,当s在0.3-0.35mm的范围内时,可获得最高的耦合效率和最大的工作距离。高于和低于此范围,上述参数的值将大大降低。实验上,Nd:YAG激光焊接系统已用于蝶形配置中的对准和对准耦合部件。通过实验获得的耦合系统的耦合效率约为75%,工作距离较短。从横向和角度偏移对耦合效率的影响,可以清楚地看到,激光二极管的模场从椭圆形变为圆形,因此与单模光纤的模场有效匹配。

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