Fang Meiqi
Opt Lett. 2024 Feb 15;49(4):899-902. doi: 10.1364/OL.511677.
This Letter presents a novel, to the best of our knowledge, branch-cut algorithm for unwrapping phase maps acquired through fringe projection systems. The algorithm exposes second-order residues with vortex phase structures, computed from the original wrapped phase distribution using a second-order derivative that considers the wrap cycle. Remarkably, it reveals a consistent vorticity direction associated with these vortex structures, significantly facilitating branch-cut connections between residues, regardless of whether they carry the same or opposite charges. This innovative approach challenges a longstanding misconception in conventional branch-cut methods, which traditionally connected matched residues only when they had opposite charges. As a result, the algorithm provides a highly accurate methodology for explaining how phase behavior relates to surface characteristics. Its effectiveness is demonstrated through both computer simulations and practical experiments.
据我们所知,本信函提出了一种用于解开通过条纹投影系统获取的相位图的新型分支切割算法。该算法利用考虑包裹周期的二阶导数从原始包裹相位分布中计算出具有涡旋相位结构的二阶残差。值得注意的是,它揭示了与这些涡旋结构相关的一致涡度方向,极大地促进了残差之间的分支切割连接,无论它们携带相同或相反的电荷。这种创新方法挑战了传统分支切割方法中长期存在的误解,传统方法通常仅在匹配的残差具有相反电荷时才将它们连接起来。因此,该算法提供了一种高度准确的方法来解释相位行为与表面特征之间的关系。通过计算机模拟和实际实验都证明了其有效性。