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首页> 外文期刊>Japanese journal of applied physics >Accuracy of Position Measurement Method Using Arago Spot for Inertial Fusion Energy Target Tracking System
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Accuracy of Position Measurement Method Using Arago Spot for Inertial Fusion Energy Target Tracking System

机译:惯性聚变能量目标跟踪系统中使用Arago点的位置测量方法的准确性

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The accuracy of a position measurement method using the Arago spot is reported for an inertial fusion energy (IFE) target tracking system, where the position of the target is determined by the position of the Arago spot, which is a bright spot appearing in the central portion of the diffraction pattern of a spherical obstacle. We use a He-Ne laser as the light source and a charge-coupled device (CCD) camera with a microscope objective lens to magnify and record the diffraction pattern of a spherical target. We examine two different algorithms to determine the center of the Arago spot in order to compare the measurement performances. The experimental results show that the position of a 5-mm-diameter target can be obtained with a measurement resolution of 1 μm and an rms measurement error of less than 0.2 μm for both algorithms when the distance between the target and the microscope objective lens is 5 cm.
机译:对于惯性聚变能量(IFE)目标跟踪系统,报告了使用Arago点的位置测量方法的准确性,该目标跟踪系统的位置由Arago点的位置确定,该位置是出现在中央的亮点球形障碍物衍射图的一部分。我们使用氦氖激光作为光源,并使用带有显微镜物镜的电荷耦合器件(CCD)相机来放大和记录球形目标的衍射图。为了比较测量性能,我们研究了两种不同的算法来确定Arago光斑的中心。实验结果表明,当目标与显微镜物镜之间的距离为1mm时,两种算法都可以得到5mm直径目标的位置,测量分辨率为1μm,均方根值测量误差小于0.2μm。 5厘米

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