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Analysis and optimization of the input/output fiber configuration in laser package design

机译:激光封装设计中输入/输出光纤配置的分析和优化

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摘要

The mechanical and thermally induced stresses in the input/output (I/O) fiber in a laser package design are evaluated for different fiber configurations. It is shown that, if the fiber experiences bending deformations, the mechanical stresses canbe minimized by applying a proper end off-set. It is found also that, if the optical device can be rotated around the transverse axis by a small angle, this rotation can be effectively used for minimizing the stresses. The smallest fiber span can beachieved, if necessary, by making the fiber straight. In this case the fiber should be short enough to avoid buckling under the action of the compressive stress. We suggest that such a configuration be employed when the appropriate rotation of the deviceis possible, fiber ends can be easily aligned, and the support structures are strong enough to withstand the elevated thermal force from the compressed fiber. Although the results of the performed analysis can provide guidance for optimizing the I/O fiber configuration, the final selection of such a configuration can be made only after the allowable stress and the achievable end alignment (in the case of straight fiber) are established experimentally.
机译:针对不同的光纤配置,评估了激光封装设计中输入/输出(I / O)光纤中的机械应力和热应力。结果表明,如果纤维发生弯曲变形,则通过施加适当的端部偏移可以使机械应力最小化。还发现,如果光学装置可以绕横轴旋转小角度,则该旋转可以有效地用于使应力最小化。如有必要,可以通过使光纤笔直来最小化光纤跨度。在这种情况下,纤维应足够短,以免在压应力作用下弯曲。我们建议,当设备可以适当旋转时,可以采用这种配置,可以轻松对齐光纤末端,并且支撑结构足够坚固,可以承受来自压缩光纤的升高的热力。尽管执行的分析结果可以为优化I / O光纤配置提供指导,但只有在实验确定允许应力和可实现的端部对齐(对于直纤维的情况)之后才能最终选择这种配置。

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