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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Characteristics of light-plasmon coupling on chiral-graphene interface
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Characteristics of light-plasmon coupling on chiral-graphene interface

机译:手性 - 石墨烯界面光等耦合特性

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This theoretical study has been carried out on the characteristics of light-plasmon coupling on the chiral-graphene interface. The grapheme's conductivity is modeled in the framework of Kubo's formulism. The impedance boundary condition approach is used to compute the dispersion relationship for the chiral-graphene interface and dispersion curve analysis is used to study the light-plasmon coupling on the chiral-graphene interface. This study concludes that the chiral-graphene interface supports the hybrid surface plasmon modes, i.e., the upper and lower modes that can be used to sense the chirality and chemical sense biochemical molecules. Furthermore, this study presents the influence of chirality (xi), chemical potential (mu(g)) and layers of graphene (N) on the dispersion relation, propagation length (L-p), and effective mode index (N-eff), and it concludes that both the chiral and graphene parameters can be used to tune the plasmonics resonance frequencies. This study presents the cutoff chiral value (xi(c)) as a function of the frequency (omega) under different values of chemical potential (mu(g)) and index of refraction (n(c)), and the numerical results revealed that light - plasmon coupled modes are exploitable for on-chip chiral sensing and enantiomeric detection applications. (C) 2018 Optical Society of America
机译:该理论研究已经对手性 - 石墨烯界面上的光等离子耦合特性进行了。图形的电导率在Kubo的公式中的框架中建模。阻抗边界条件方法用于计算手性 - 石墨烯界面的色散关系,并且使用色散曲线分析来研究手性 - 石墨烯界面上的光等离子耦合。该研究得出结论,手性 - 石墨烯界面支持混合表面等离子体模式,即可用于感测手性和化学意义生物化学分子的上层和下部模式。此外,该研究呈现了手性(XI),化学电位(MU(G))和石墨烯(N)层对分散关系,传播长度(LP)和有效模式指数(N-EFF)的影响的影响它的结论是,手性和石墨烯参数都可用于调谐旋转谐振频率。本研究呈现截止手性值(XI(C))作为频率(ω)在不同的化学电位(MU(g))和折射率(n(c))下的函数(n(c)),并且显示数值结果光等耦合模式可用于片上手性传感和对映体检测应用。 (c)2018年光学学会

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