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Surface condition measurement using optical heterodyne method

机译:使用光学外差法测量表面状况

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Abstract: A surface height variation measurement device based on the differential heterodyne interferometric scheme using new optical beam scanning techniques is described. An acousto-optic deflector (AOD) is driven by a signal which has two frequency components to generate two first-order diffraction beams at different frequencies for the probing light beams. The two beams, which have only a slight separation, are deflected by the AOD. The scanning distance of the two beams via the AOD can be extended using a Galvano mirror, which is driven synchronized with the AOD and scans the two beams in the same direction. The scanning direction of the two beams can be changed in various directions in the two-dimensional plane using a specially made rotating prism. The difference in surface height between the points where the two beams are incident is detected from the phase change of a beat signal with accuracies on the order of 1 nm. We applied this device to surface condition measurements, such as surface roughness, shape, and fine angle. !12
机译:摘要:描述了一种基于差分外差干涉法的表面高度变化测量装置,该装置使用了新的光束扫描技术。声光偏转器(AOD)由具有两个频率分量的信号驱动,以产生两个不同频率的一阶衍射光束用于探测光束。只有一点点间隔的两个光束被AOD偏转。可以通过Galvano反射镜扩展通过AOD的两束光束的扫描距离,该镜与AOD同步驱动并以相同方向扫描两束光束。使用特制的旋转棱镜,可以在二维平面内的各个方向上改变两个光束的扫描方向。根据拍频信号的相位变化来检测两束光束入射点之间的表面高度差,其精度约为1 nm。我们将此设备应用于表面状态测量,例如表面粗糙度,形状和微角度。 !12

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