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Multi-axis heterodyne interferometer for simultaneous observation of 5 degrees of freedom using a single beam

机译:多轴外差干涉仪,使用单光束同时观察5个自由度

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A multi-axis heterodyne interferometer concept is under development for observations of five degrees of dynamicfreedom using a single illumination source. This paper presents a laboratory system that combines elements ofheterodyne Doppler vibrometry, holography, and digital image correlation to simultaneously quantify in-planetranslation, out-of-plane rotation, and out-of-plane displacement at the nanometer scale. The sensor conceptobserves a dynamic object by mixing a single optical field with heterodyne reference beams and collecting thesecombined fields at the image and Fourier planes, simultaneously. Polarization and frequency multiplexing areapplied to separate two segments of a receive Mach-Zehnder interferometer. Different optical configurations areutilized; one segment produces a focused image of the optical field scattered off the object while the other segmentproduces an optical Fourier transform of the optical eld scattered off the object. Utilizing the amplitude andphase from each plane allows quantification of multiple components of transient motion using a single, orthogonalbeam.
机译:多轴外差干涉仪概念正在开发中,用于观测五度动态 使用单个照明源的自由度。本文介绍了一个结合了以下要素的实验室系统: 外差多普勒振动测定法,全息术和数字图像相关性,可同时量化面内 纳米级的平移,平面外旋转和平面外位移。传感器概念 通过将单个光场与外差参考光束混合并收集这些光束来观察动态物体 同时在图像平面和傅立叶平面上组合场。极化和频率复用是 应用于分开的接收马赫曾德尔干涉仪的两个部分。不同的光学配置是 利用一个片段产生从物体散射的光场的聚焦图像,而另一片段 产生从物体上散落的光场的光学傅立叶变换。利用振幅和 每个平面的相位允许使用单个正交信号来量化瞬态运动的多个分量 光束。

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