带扩散玻璃旋转的数字全息显微镜散斑噪声抑制

Bingcai Liu, Rui Niu, A. Tian, Hongjun Wang, Xueliang Zhu, Yuanying Wang
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引用次数: 0

摘要

数字全息显微镜是一种理想的非侵入性、非接触式、快速响应的3D测量方法。激光的强相干性导致数字全息记录过程中产生不规则分布的散斑噪声,影响了数字全息显微系统的三维重建。为了解决这一问题,在数字全息测量系统中,通过扩散玻璃旋转改变激光的相干性来实现对散斑噪声的抑制。首先,建立了基于扩散玻璃旋转的数字全息显微系统的理论模型。然后,模拟分析了扩散玻璃转速对相干时间、散斑对比度、条纹对比度、信噪比的影响,得到了数字全息显微系统的最佳转速。最后,建立了基于Mach-Zehnder干涉模型的散斑噪声抑制系统,设置了扩散玻璃旋转的最优参数,验证了该方法适用于高精度测量。
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Speckle noise suppression of digital holographic microscopy with diffusion glass rotation
Digital holographic microscopy is an ideal non-invasive, non-contact, and fast-response 3D measurement method. The strong coherence of the laser leads to irregularly distributed speckle noise during the digital holographic recording process, which affects the 3D reconstruction of the digital holographic microscopy system. To solve this problem, the coherence of the laser is changed by diffusion glass rotation to achieve the suppression of the speckle noise in the digital holographic measurement system. Firstly, a theoretical model of a digital holographic microscopy system based on the diffusion glass rotation is established. Then, the influence of diffusion glass rotation speed on coherence time, speckle contrast, fringe contrast, signal-to-noise ratio are simulated and analyzed, the optimal rotation speed of the digital holographic microscopy system is obtained. Finally, The speckle noise suppression system based on the Mach-Zehnder interference model is established, and the optimal parameters of the diffusion glass rotation are set, which verifies that the method is suitable for high-precision measurement.
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