School of Mathematics and Physics, Queen's University Belfast, Belfast, BT7 1NN, United Kingdom.
Nanotechnology. 2020 Apr 3;31(14):145706. doi: 10.1088/1361-6528/ab6237. Epub 2019 Dec 16.
Extraordinarily high optical contrast is instrumental to research and applications of two-dimensional materials, such as, for rapid identification of thickness, characterisation of optical properties, and quality assessment. With optimal designs of substrate structures and light illumination conditions, unprecedented optical contrast of MoS on Au surfaces exceeding 430% for monolayer and over 2600% for bilayer is achieved. This is realised on custom-designed substrates of near-zero reflectance near the normal incidence. In particular, by using an aperture stop to restrict the angle of incidence, high-magnification objectives can be made to achieve extraordinarily high optical contrast in a similar way as the low-magnification objectives, but still retaining the high spatial resolution capability. The technique will allow small flakes of micrometre size to be located easily and identified with great accuracy, which will have significant implications in many applications.
极高的光学对比度对于二维材料的研究和应用至关重要,例如,可用于快速识别厚度、表征光学性质和质量评估。通过优化衬底结构和光照条件的设计,在金表面上实现了超过 430%的单层和超过 2600%的双层 MoS 的前所未有的光学对比度。这是在接近正入射的近零反射率的定制衬底上实现的。特别地,通过使用孔径光阑来限制入射角,可以使用高倍物镜以类似于低倍物镜的方式实现极高的光学对比度,但仍保留高空间分辨率能力。该技术将允许轻松定位和精确识别微毫米大小的小薄片,这将在许多应用中具有重要意义。