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FABRICATION METHOD FOR ENDCAPPED FIBER LASER PIGTAILS WITH SUB-MICRON VIRTUAL WAIST POSITIONAL ACCURACY

机译:亚微米级虚拟腰部定位精度的封尾光纤激光器的制造方法

摘要

Arrays of fiber pigtails can be used to project and receive light. Unfortunately, most fiber pigtail arrays are not aligned well enough for coherently combining different optical beams. This imprecision stems in part from misalignment between the optical fiber and the endcap spliced to the end of the optical fiber. The endcap is often polished, curved, or patterned, causing the light emitted by the endcapped fiber to refract or diffract as it exits the endcap. This refraction or diffraction shifts the apparent position of the beam waist from its actual position. Measuring this virtual beam waist position before and after splicing the endcap to the fiber increases the absolute precision with which the fiber is aligned to the endcap. This increase in absolute precision reduces the deviation in virtual beam waist position among endcapped fibers, making it easier to produce arrays of endcapped fibers aligned precisely enough for coherent beam combining.
机译:光纤尾纤阵列可用于投射和接收光。不幸的是,大多数光纤尾纤阵列排列得不够好,无法相干地组合不同的光束。这种不精确性部分是由于光纤与拼接到光纤末端的端盖之间的未对准引起的。端盖经常被抛光,弯曲或图案化,从而使端盖光纤发射的光在离开端盖时发生折射或衍射。这种折射或衍射使束腰的视在位置从其实际位置偏移。在将端盖接合到光纤之前和之后测量该虚拟光束腰部位置可以提高光纤与端盖对齐的绝对精度。绝对精度的提高减小了端盖光纤之间的虚拟光束腰部位置的偏差,从而使得更容易生产出足够精确对准以进行相干光束合并的端盖光纤阵列。

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