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Angular displacement and deformation analyses using a speckle-based wavefront sensor

机译:使用基于斑点的波前传感器进行角位移和变形分析

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摘要

Wavefronts incident on a random phase plate are reconstructed via phase retrieval utilizing axially displaced speckle intensity measurements and the wave propagation equation. Retrieved phases and phase subtraction facilitate the investigations of wavefronts from test objects before and after undergoing a small rotation or deformation without sign ambiguity. Angular displacement ((DELTA)(theta)) between incident planar wavefronts is determined from the light source vacuum wavelength (lambda) divided by the fringe spacing (LAMBDA). Fourier analysis of the wavefront phase difference yields a peak frequency that is inversely proportional to LAMBDA, and the sign gives the direction of rotation. Numerical simulations confirm the experimental results. In the experiments, the smallest (DELTA)(theta) measured is 0.031 deg. The technique also permits deformation analysis of a reflecting test object under thermal loading. The technique offers simple, high resolution, noncontact, and whole field evaluation of three-dimensional objects before and after undergoing rotation or deformation.
机译:入射在随机相位板上的波前通过利用轴向位移的斑点强度测量值和波传播方程式的相位恢复来重建。检索到的相位和相位减法有助于在进行小幅度旋转或变形之前和之后从测试对象的波前进行调查,而不会出现明显的歧义。入射平面波阵面之间的角位移(Δθ)由光源真空波长(λ)除以条纹间距(LAMBDA)确定。波前相位差的傅立叶分析得出的峰值频率与LAMBDA成反比,并且符号给出了旋转方向。数值模拟证实了实验结果。在实验中,测得的最小Δθ为0.031度。该技术还允许在热负荷下对反射测试对象进行变形分析。该技术可对旋转或变形之前和之后的三维物体进行简单,高分辨率,非接触式和全视野评估。

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