首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Application of the ABCD ray matrix method for the design of a refractive 2.5x beam expander-focuser used for coupling laser beams into a 5 x 4 fiber-optic array: Comparison with Zemax Gaussian and geometrical optics calculations
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Application of the ABCD ray matrix method for the design of a refractive 2.5x beam expander-focuser used for coupling laser beams into a 5 x 4 fiber-optic array: Comparison with Zemax Gaussian and geometrical optics calculations

机译:ABCD射线矩阵方法在设计用于将激光束耦合到5 x 4光纤阵列中的2.5x折射扩束器-聚焦器的设计中的应用:与Zemax高斯和几何光学计算的比较

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In this article, an approach for the design and construction of a refractive 2.5 x Galilean beam expander-focuser system which incorporates a two-axis galvanometer for coupling non-collinear laser beams into a 5x4200 mu M core diameter fiber-optic array is discussed. M-2 Gaussian beam waist and beam waist location computations using the ABCD ray matrix and Zemax (R) paraxial Gaussian optics methods are given. Using the described optical system a 532 nm and 637 nm laser beams are coupled non-collinearly into 200 pm core diameter fiber array by focusing down the laser beams to 71.26 +/- 3.18 m and 90.32 +/- 4.28 mu m diameter spots, respectively. Furthermore, an experimental validation for the focused beam size calculations using a knife-edge profilemeter is provided. The measured average transmission for the fibers in the fiber-optic array is 92.5 +/- 43.78% (maximum FCE (fiber coupling efficiency): 99%; minimum FCE: 82%). Whereas the Zemax (R) calculated geometric ray-optics fiber coupling efficiency for the beam expander-focuser into a 200 mu m core diameter fiber using uncoated lenses and without accounting for Fresnel reflections and bulk absorption effects is 100%. Geometric ray-optics calculations indicate that Fresnel reflections and bulk absorption effects account for 7% of the 100% FCE value. The described optical switching scheme which incorporates a galvanometer is used for exciting asynchronously 20 PCR (Polymerase Chain Reaction) vessels in high throughput DNA/RNA amplification systems. 2015 Elsevier GmbH. All rights reserved.
机译:在本文中,讨论了一种设计和构造2.5 x伽利略折射式扩束器-聚焦器系统的方法,该系统结合了用于将非共线激光束耦合到5x4200μM纤芯直径光纤阵列中的两轴振镜。给出了使用ABCD射线矩阵和Zemax(R)近轴高斯光学方法计算的M-2高斯束腰和束腰的位置。使用上述光学系统,将532 nm和637 nm激光束分别向下聚焦到直径分别为71.26 +/- 3.18 m和90.32 +/- 4.28μm的光点,以非共线方式耦合到200 pm芯直径的光纤阵列中。此外,提供了使用刀口轮廓仪进行聚焦光束尺寸计算的实验验证。测得的光纤阵列中光纤的平均透射率为92.5 +/- 43.78%(最大FCE(光纤耦合效率):99%;最小FCE:82%)。而使用未镀膜透镜且不考虑菲涅耳反射和体积吸收效应的情况下,Zemax(R)计算出的扩束器-聚焦器进入直径为200μm纤芯的几何光线光纤耦合效率为100%。几何光线计算表明,菲涅耳反射和体积吸收效应占100%FCE值的7%。所描述的包含电流计的光交换方案用于在高通量DNA / RNA扩增系统中异步激发20个PCR(聚合酶链反应)容器。 2015 Elsevier GmbH。版权所有。

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