Zhang Hengkang, Zhang Bin, Liu Qiang
Opt Express. 2020 May 11;28(10):15006-15015. doi: 10.1364/OE.393396.
Transmission matrix (TM) is an ideal theoretical model describing light propagation through scattering media. Until now, most of the present TMs utilize the eigenstates of spatial position as input and output bases. Thus, they describe the relationship between the spatial distributions of two light fields. Here, we demonstrate that wider relationships between the light fields could be described by a TM. As a significant example, we propose a generalized TM with the eigenstates of OAM as input bases - OAM-basis TM. With the measured OAM-basis TM, we achieved single-spot and multiple-spot focusing, verifying its availability in light propagation manipulation. The distinct eigenchannels property was also discussed. The OAM-basis TM has broadened the definition of TM. Meanwhile, it will open new perspectives for OAM-based communication, as well as the applications of wavefront shaping technology in biomedical photonics and optical communication.
传输矩阵(TM)是描述光通过散射介质传播的理想理论模型。到目前为止,大多数现有的传输矩阵利用空间位置的本征态作为输入和输出基。因此,它们描述了两个光场空间分布之间的关系。在此,我们证明传输矩阵可以描述光场之间更广泛的关系。作为一个重要的例子,我们提出了一种以轨道角动量(OAM)本征态作为输入基的广义传输矩阵——OAM基传输矩阵。利用测量得到的OAM基传输矩阵,我们实现了单点和多点聚焦,验证了其在光传播操纵中的可用性。还讨论了其独特的本征通道特性。OAM基传输矩阵拓宽了传输矩阵的定义。同时,它将为基于OAM的通信以及波前整形技术在生物医学光子学和光通信中的应用开辟新的前景。