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Discovering the forbidden Raman modes at the edges of layered materials

机译:在分层材料的边缘发现禁止的拉曼模式

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The edges of layered materials have unique properties that substantially differ from the body regions. In this work, we perform a systematic Raman study of the edges of various layered materials (MoS2, WS2, WSe2, PtS2, and black phosphorus). The Raman spectra of the edges feature newly observed forbidden Raman modes, which are originally undetectable from the body region. By selecting the edge type and the polarization directions of the incident and scattered light, all forbidden Raman modes are distinctly detected. Optical simulations show that the edges of layered materials drastically distort the electromagnetic fields of both the incident and scattered light, so that the light interacts with the edges in a distinct way, which differs from its interactions with the body regions.
机译:层状材料的边缘具有独特的属性,这些属性与主体区域大不相同。在这项工作中,我们对各种分层材料(MoS2,WS2,WSe2,PtS2和黑磷)的边缘进行了系统的拉曼研究。边缘的拉曼光谱具有新观察到的禁止拉曼模式,该模式本来无法从人体区域检测到。通过选择入射光和散射光的边缘类型和偏振方向,可以清晰地检测到所有禁止的拉曼模式。光学模拟表明,层状材料的边缘使入射光和散射光的电磁场大大扭曲,从而使光与边缘发生交互作用的方式明显不同,这不同于其与身体部位的交互作用。

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