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首页> 外文期刊>Journal of Lightwave Technology >A novel fiber alignment shift measurement and correction technique in laser-welded laser module packaging
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A novel fiber alignment shift measurement and correction technique in laser-welded laser module packaging

机译:激光焊接激光模块包装中的新型光纤对准偏移测量和校正技术

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摘要

A novel measurement and correction technique employing an ultra-high-precision laser displacement meter (LDM) with a 20-nm resolution to probe the postweld-shift (PWS)-induced fiber alignment shifts in laser-welded laser module packaging is presented. The results show that the direction and magnitude of the fiber alignment shifts induced by the PWS in laser-welded laser module packaging can be quantitatively determined by four parameters: the lateral position (r), the position angle (/spl alpha/), the swing angle (/spl theta/), and the tilt angle (/spl psi/). Further studies show that the deformation of the lateral shift and the position angle are the dominant mechanisms that determine the fiber alignment shifts induced by the PWS. This clearly indicates that the PWS can be quantitatively corrected timely by applying a single weld spot on the negative lateral shift and the position angle to compensate for the fiber alignment shifts. In comparison with previous studies of the PWS correction by a qualitatively estimated technique, this LDM technique has significantly provided an important tool for quantitative measurement and correction to the effect of the PWS on the fiber alignment shifts in laser-welded laser module packaging. Therefore, the reliable laser modules with high yield and high performance used in low-cost lightwave transmission systems may be developed and fabricated.
机译:提出了一种新颖的测量和校正技术,该技术采用分辨率为20 nm的超高精度激光位移计(LDM)来探测激光焊接激光模块包装中的焊后位移(PWS)引起的光纤对准位移。结果表明,激光焊接激光模块包装中的PWS引起的光纤排列偏移的方向和幅度可以通过四个参数定量确定:横向位置(r),位置角度(/ spl alpha /),摆角(/ spl theta /)和倾斜角(/ spl psi /)。进一步的研究表明,横向位移的变形和位置角是决定PWS引起的光纤对准位移的主要机制。这清楚地表明,可以通过在负的横向偏移和位置角上应用单个焊点来补偿光纤对准偏移,从而及时对PWS进行定量校正。与先前通过定性估计技术进行的PWS校正研究相比,该LDM技术为定量测量和校正PWS对激光焊接的激光模块包装中的光纤排列偏移的影响提供了重要的工具。因此,可以开发和制造在低成本光波传输系统中使用的具有高产量和高性能的可靠激光器模块。

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