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Ultrahigh-resolution nonlinear optical imaging of the armchair orientation in 2D transition metal dichalcogenides

机译:二维过渡金属二卤化物中扶手椅取向的超高分辨率非线性光学成像

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摘要

We used nonlinear laser scanning optical microscopy to study atomically thin transition metal dichalcogenides (TMDs) and revealed, with unprecedented resolution, the orientational distribution of armchair directions and their degree of organization in the two-dimensional (2D) crystal lattice. In particular, we carried out polarization-resolved second-harmonic generation (PSHG) imaging for monolayer WS2 and obtained, with high-precision, the orientation of the main crystallographic axis (armchair orientation) for each individual 120 × 120 nm2 pixel of the 2D crystal area. Such nanoscale resolution was realized by fitting the experimental PSHG images, obtained with sub-micron precision, to a new generalized theoretical model that accounts for the nonlinear optical properties of TMDs. This enabled us to distinguish between different crystallographic domains, locate boundaries and reveal fine structure. As a consequence, we can calculate the mean orientational average of armchair angle distributions in specific regions of interest and define the corresponding standard deviation as a figure-of-merit for the 2D crystal quality.
机译:我们使用非线性激光扫描光学显微镜研究了原子稀薄的过渡金属二硫化二氢(TMD),并以前所未有的分辨率揭示了扶手椅方向的定向分布及其在二维(2D)晶格中的组织度。特别是,我们对单层WS2进行了偏振分辨二次谐波生成(PSHG)成像,并以高精度获得了每个120×120 nm 2的主结晶轴方向(扶手椅方向)二维晶体区域的像素。通过将亚微米精度获得的实验PSHG图像拟合到考虑了TMDs非线性光学特性的新型广义理论模型中,可以实现这种纳米级分辨率。这使我们能够区分不同的晶体学区域,定位边界并揭示精细的结构。结果,我们可以计算特定感兴趣区域中扶手椅角分布的平均取向平均值,并将相应的标准偏差定义为2D晶体质量的品质因数。

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