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Fiber collimator arrays for optical devices/systems

机译:用于光学设备/系统的光纤准直器阵列

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摘要

New single-mode fiber collimator arrays (FCAs) were designed, assembled, and tested at a wavelength of 1550 nm. For FCAs using an 8-channel GRIN (gradient index) planar microlens array with a pitch of 250 μm and a focal length of 0.7 mm, the insertion loss was 0.5 dB with uniformity of 0.12 dB, at a collimator separation of 10 mm. The crosstalk from the other channels was less than -45 dB and the return loss of each channel was > 60 dB. For FCAs using a 6-channel lens array by fixing GRIN rod lenses into a V-groove array, the insertion loss was less than 0.5 dB at a collimator separation of 100 mm. By analyzing formulas for calculating Gaussian beam propagation for the design, some simple and useful formulas were introduced for calculating the size and position of the beam waist from those of its image, and for calculating the maximum collimator separation with efficient coupling.
机译:在1550 nm的波长下设计,组装和测试了新的单模光纤准直仪阵列(FCA)。对于使用间距为250μm,焦距为0.7 mm的8通道GRIN(梯度指数)平面微透镜阵列的FCA,在准直器间距为10 mm时,插入损耗为0.5 dB,均匀度为0.12 dB。来自其他通道的串扰小于-45 dB,并且每个通道的回波损耗均大于60 dB。对于通过将GRIN杆状透镜固定在V形槽阵列中而使用6通道透镜阵列的FCA,在准直器间距为100 mm时插入损耗小于0.5 dB。通过分析设计中用于计算高斯光束传播的公式,引入了一些简单而有用的公式,用于根据其束腰的尺寸和位置来计算束腰的尺寸和位置,以及通过有效耦合来计算最大准直仪间距。

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