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Plasmonic Enhancement and Manipulation of Optical Nonlinearity in Monolayer Tungsten Disulfide

机译:单层二硫化钨的等离子体增强和光学非线性的操纵

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Monolayer transition metal dichalcogenides (TMDCs) have large second-order optical nonlinearity owing to broken inversion symmetry in two-dimensional (2D) crystals. However, despite the strong light-matter coupling in monolayer TMDCs, their nonlinear responses are ultimately limited by subnanometer thickness. Here, a dramatic enhancement of the second-harmonic generation (SHG) is achieved from monolayer tungsten disulfide (WS2) incorporated onto a 2D silver (Ag) nanogroove grating with subwavelength pitch. By tuning surface plasmon mode and second-harmonic frequency in resonance with the C exciton in WS2, a large SHG enhancement factor (approximate to 400) and a large conversion efficiency (approximate to 2.0 x 10(-5)) can be obtained. Furthermore, the azimuthal angle dependence of polarized SHG from monolayer WS2 can be manipulated by the nanogroove plasmonic mode. Based on this property, a polarization-modulated optical encoding technique is demonstrated. The results suggest that 2D TMDC-plasmonic hybrid metasurface structures can provide an ideal integration platform for on-chip nonlinear photonics and plasmonics.
机译:由于二维(2D)晶体中反演对称性的破坏,单层过渡金属二硫化碳(TMDC)具有较大的二阶光学非线性。然而,尽管在单层TMDC中光-物质耦合很强,但它们的非线性响应最终还是受到亚纳米厚度的限制。在这里,通过将单层二硫化钨(WS2)结合到具有亚波长节距的2D​​银(Ag)纳米沟槽光栅中,可以实现二次谐波(SHG)的显着增强。通过与WS2中的C激子共振来调节表面等离激元模式和二次谐波频率,可以获得较大的SHG增强因子(大约为400)和较大的转换效率(大约为2.0 x 10(-5))。此外,可以通过纳米槽等离子体激元控制来自单层WS2的极化SHG的方位角依赖性。基于该特性,说明了偏振调制光编码技术。结果表明,二维TMDC-等离激元混合超表面结构可以为片上非线性光子和等离激元提供理想的集成平台。

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