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In-plane optical anisotropy in ReS2 flakes determined by angle-resolved polarized optical contrast spectroscopy

机译:平面光学各向异性在它片由angle-resolved偏振光学对比光谱学

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摘要

Various in-plane anisotropic properties are observed for the layered semiconducting transition metal dichalcogenide (TMD), rhenium disulfide (ReS2) due to its reduced symmetry. The understanding of these unique anisotropic behaviors in ReS2 will promote its applications in optoelectronics. In this work, angle-resolved polarized optical contrast spectroscopy has proved to be an efficient, quantitative, and non-destructive method to probe the optical anisotropy in ReS2 flakes with different thicknesses. The contrast value of ReS2 displays the maximum intensity when the polarization of incident light is along the Re-Re chain direction, while the contrast shows the minimum value when the polarization is perpendicular. An empirical equation for in-plane anisotropic refractive index calculation has been proposed and the angle-resolved polarized optical contrasts of 1-3-layer ReS2 are calculated. The calculation results show good agreements with the experimental observations. This indicates that the proposed equation is indeed appropriate for the quantitative understanding of birefringence and dichroism in ReS2 flakes. Our results not only shed light on the identification of crystal axes in anisotropic materials by using angle-resolved polarized contrast spectroscopy, but also provide quantitative information about anisotropy in anisotropic materials such as ReS2.
机译:各种平面各向异性属性观察到分层的半导体过渡金属dichalcogenide (TMD),铼二硫(它)由于其降低了对称。理解这些独特的各向异性在它将促进其应用程序的行为在光电子学。偏振光学对比光谱被证明是一种有效的、定量的和非破坏性探测的光学方法各向异性在它与不同的雪花厚度。最大强度的极化入射光沿着Re-Re链方向,而对比显示了最小垂直极化时的价值。平面各向异性的经验方程折射率计算提出了和angle-resolved偏振光学对比的1-3-layer它计算。计算结果显示良好的协议实验观察。该方程确实是适合双折射的定量认识并在它片二向色性。只有揭示晶体的识别轴各向异性材料的使用angle-resolved偏振光谱对比,还提供定量信息各向异性在各向异性材料,如它。

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