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Compound Speckle Reduction in Laser Imaging Systems by Using a Vibrating Multimode Fiber and a Tracked Moving Flexible DOE Loop

机译:通过使用振动的多模光纤和跟踪的移动柔性DOE环路复合斑点减少激光成像系统

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摘要

The speckle phenomenon produced by coherent waves interfering with each other is undesirable in laser imaging systems. For each of the laser speckle reduction methods in the literature, it is difficult to reduce speckle to an extremely low level (< 3%) and also ensure good image quality. Therefore, a compound speckle reduction method based on the combination of a vibrating multimode fiber and a tracked moving flexible DOE loop is proposed and demonstrated for the first time. We have experimentally demonstrated the effectiveness of the proposed compound method, which can reduce the speckle contrast to 1.96% and obtain good spot quality. The relationship between the time-averaging effect of the speckle patterns from a vibrating multimode fiber and from a tracked moving DOE loop is discussed thoroughly. Our experimental results are in good agreement with Goodman’s speckle theory. We expect that the compound speckle reduction method we proposed will have promising potential for applications in laser imaging systems.
机译:通过相干波相互干扰所产生的散斑现象是在激光成像系统中不期望的。对于每个文献中的激光散斑减少方法中,难以降低斑点到极低的水平(<3%),并且还保证良好的图像质量。因此,基于在振动多模光纤的组合和化合物散斑减少方法的跟踪移动柔性DOE环路被提出并实现了首次。我们已经实验证明所提出的化合物的方法的有效性,这可以减少散斑对比度〜1.96%,将获得良好的光点质量。从振动多模光纤以及从跟踪移动DOE环的散斑图案的时间平均效果之间的关系充分讨论。我们的实验结果与古德曼的斑点理论一致。我们预计,我们提出了复合的斑点减少方法已在激光成像系统中的应用前途的潜力。

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