Department of Electrical Engineering and Computer Science, Northwestern University, Evanston, IL, 60208, USA.
Sci Rep. 2019 Apr 25;9(1):6550. doi: 10.1038/s41598-019-43059-z.
We provide first-principle theoretical and numerical simulations using the coherent Transfer Matrix Approach (TMA) to describe the behavior of the three main class of the optical beacons namely phase conjugators, reflectors, and retroreflectors within a turbid medium. Our theory describes the extraordinary enhancement (about 5 dB) offered by retroreflectors compared to reflectors in our detailed experiments and shows that they effectively act as local optical phase conjugators. Moreover, the performance of retroreflectors shows little degradation for increased light incident angles in turbid media, while the performance of reflectors degrades drastically. These results may find applications for detection of the echoes of electromagnetic radiation in turbid media.
我们使用相干传输矩阵方法(TMA)提供了第一性原理的理论和数值模拟,以描述混浊介质中三种主要光学信标(相位共轭器、反射器和后向反射器)的行为。我们的理论描述了后向反射器相对于反射器在我们的详细实验中提供的非凡增强(约 5dB),并表明它们有效地充当局部光学相位共轭器。此外,后向反射器的性能在混浊介质中增加光入射角时几乎没有退化,而反射器的性能则急剧下降。这些结果可能适用于探测混浊介质中电磁辐射的回波。