Lee Seungjae, Kim Dongyeon, Nam Seung-Woo, Lee Byounghyo, Cho Jaebum, Lee Byoungho
School of Electrical and Computer Engineering, Seoul National University, Gwanak-gu Gwanakro 1, Seoul, 08826, Republic of Korea.
Sci Rep. 2020 Nov 2;10(1):18832. doi: 10.1038/s41598-020-75947-0.
Speckle reduction is an important topic in holographic displays as speckles not only reduce signal-to-noise ratio but also possess an eye-safety issue. Despite thorough exploration of speckle reduction methods using partially coherent light sources, the trade-off involved by the partial coherence has not been thoroughly discussed. Here, we introduce theoretical models that quantify the effects of partial coherence on the resolution and the speckle contrast. The theoretical models allow us to find an optimal light source that maximizes the speckle reduction while minimizing the decline of the other terms. We implement benchtop prototypes of partially coherent holographic displays using the optimal light source, and verify the theoretical models via simulation and experiment. We also present a criterion to evaluate the depth of field in partially coherent holographic displays. We conclude with a discussion about approximations and limitations inherent in the theoretical models.
散斑减少是全息显示中的一个重要课题,因为散斑不仅会降低信噪比,还存在眼睛安全问题。尽管已经对使用部分相干光源的散斑减少方法进行了深入探索,但部分相干所涉及的权衡尚未得到充分讨论。在此,我们引入了理论模型,这些模型量化了部分相干对分辨率和散斑对比度的影响。这些理论模型使我们能够找到一个最佳光源,该光源在使散斑减少最大化的同时,将其他参数的下降最小化。我们使用最佳光源实现了部分相干全息显示的台式原型,并通过模拟和实验验证了这些理论模型。我们还提出了一个评估部分相干全息显示中景深的标准。最后,我们讨论了理论模型中固有的近似和局限性。