Hu Xiao-Bo, Dong Meng-Xuan, Zhu Zhi-Han, Gao Wei, Rosales-Guzmán Carmelo
The Higher Educational Key Laboratory for Measuring & Control Technology and Instrumentations of Heilongjiang Province, Harbin University of Science & Technology, Harbin, 150080, China.
Wang Da-Heng Collaborative Innovation Center, Heilongjiang Provincial Key Laboratory of Quantum manipulation & Control, Harbin University of Science and Technology, Harbin, 150080, China.
Sci Rep. 2020 Jan 13;10(1):199. doi: 10.1038/s41598-019-56964-0.
It is well known that when a laser is reflected from a rough surface or transmitted through a diffusive medium, a speckle pattern will be formed at a given observation plane. An important parameter of speckle is its size, which for the case of homogeneous illumination, well-known relations for its computation have been derived. This is not the case for structured light beams of non-homogeneous intensity and phase distribution. Here, we propose and demonstrate, using Hermite- and Laguerre-Gaussian light modes, that the mean size of the speckle generated by these structured light beams can be measured assuming a homogeneous illumination. We further provide with mathematical expressions that relate the speckle size to the generalised definition of "spot size". To reinforce our assessment, we compare the mean speckle size generated by structured light modes with that generated by wave fronts of constant phase and amplitude and show that in both cases the mean speckle size is almost identical. Our findings reveal a fundamental property of speckle, which will be of great relevance in many speckle-based applications and will pave the way towards the development of novel applications.
众所周知,当激光从粗糙表面反射或透过扩散介质传输时,在给定的观测平面上会形成散斑图案。散斑的一个重要参数是其尺寸,对于均匀照明的情况,已经推导出了用于计算其尺寸的著名关系式。对于强度和相位分布非均匀的结构光束,情况并非如此。在这里,我们提出并利用厄米 - 高斯光模式和拉盖尔 - 高斯光模式进行了演示,即在假设均匀照明的情况下,可以测量由这些结构光束产生的散斑的平均尺寸。我们还进一步给出了将散斑尺寸与“光斑尺寸”的广义定义相关联的数学表达式。为了加强我们的评估,我们将结构光模式产生的平均散斑尺寸与具有恒定相位和幅度的波前产生的平均散斑尺寸进行了比较,结果表明在这两种情况下平均散斑尺寸几乎相同。我们的发现揭示了散斑的一个基本特性,这在许多基于散斑的应用中将具有重要意义,并将为新型应用的开发铺平道路。