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1. 中国科学院 长春光学精密机械与物理研究所 应用光学国家重点实验室,吉林 长春,130033
2. 中国科学院研究生院 北京,100039
收稿日期:2006-05-11,
修回日期:2006-09-12,
网络出版日期:2007-01-30,
纸质出版日期:2007-01-30
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梁静秋, 侯凤杰. 采用硅V型槽的一维光纤阵列的研制[J]. 光学精密工程, 2007,15(1):89-94.
LIANG Jing-qiu, HOU Feng-jie. One-dimension optical fiber array with silicon V-grooves[J]. Optics and precision engineering, 2007, 15(1): 89-94.
阐述了一维光纤阵列的研制方法
分析了V型槽法中硅V型槽腐蚀机理
计算了V型槽的开口及间距与光纤半径及纤芯截面圆心距的关系
给出了最小槽深与光纤半径及V型槽开口的关系式。用各向异性腐蚀技术制作了硅V型槽
比较了紫外及红外粘接剂的性能
进行了光纤的排列、粘接及抛光
制作出一维光纤阵列。用原子力显微镜测量光纤阵列表面粗糙度为纳米量级
用ZYGO数字干涉仪检测光纤的端头位置误差为3~5 μm。该项工作为二维光纤阵列的高精度制备奠定了基础。
one-dimension optical fiber array has been extensively applied in optical communication
optical imaging and detection systems recently. The manufacturing method of one-dimension optical fiber array and the principle of etching Si-V-grooves are introduced. The size of Si-V-grooves and the space between them are calculated according to the radius of the fiber
and a formula on the minimum depth of the Si-V-grooves is given
which related with the fiber radius and the opening space of the grooves. As a typical example
the silicon V-groove array is micromachined with anisotropic etching process
then the fibers are arranged and adhered in corresponding to the Si-V-grooves. The roughness of polished fiber surface measured with atomic force microscope (AFM) is in nanometer magnitude
and the position error is 3~5 micron
which shows these works will lay the foundation for further study on two-dimension fiber array.
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