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Role of electron back action on photons in hybridizing double-layer graphene plasmons with localized photons

机译:电子背动作在杂交双层石墨烯等离子局部光子中的角色的作用

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In this paper, we deal with the electromagnetic coupling between an incident surface-plasmon-polariton wave and relativistic electrons in two graphene layers. Our previous investigation was limited to single-layer graphene (Iurov et al 2017 Phys. Rev. B 96 081408). However, the present work, is both an expanded and extended version of this previous Phys. Rev. B paper after having included very detailed theoretical formalisms and extensive comparisons of results from either one or two graphene layers embedded in a dielectric medium. The additional retarded Coulomb interaction between two graphene layers will compete with the coupling between the single graphene layer and the surface of a conductor. Consequently, some distinctive features, such as triply-hybridized absorption peaks and a new acoustic-like graphene plasmon mode within the anticrossing region, have been found for the double-layer graphene system. Physically, our theory is self-consistent, in comparison with a commonly adopted perturbative theory, for studying hybrid light-plasmon modes and the electron back action on photons. Instead of usual radiation or grating-deflection field coupling, a surface-plasmon-polariton localized field coupling is introduced with completely different dispersion relations for radiative (small wave numbers) and evanescent (large wave numbers) field modes. Technically, the exactly calculated effective scattering matrix for this theory can be employed to construct an effective-medium theory in order to improve the accuracy of the wellknown finite-difference time-domain method for solving Maxwell's equations numerically. Practically, the predicted triply-hybridized absorption peaks can excite polaritons only, giving rise to a possible polariton-condensation based laser.
机译:在本文中,我们在两个石墨烯层中处理入射表面 - 等离子 - 极性波和相对主义电子之间的电磁耦合。我们以前的调查仅限于单层石墨烯(Iurov等,2017年。Rev. B 96 081408)。但是,目前的工作是此前Phys的扩展和扩展版本。在包括嵌入在介电介质中的一个或两个石墨烯层的嵌入中的一个或两个石墨烯层的大量理论形式主义和广泛比较之后的纸张。两个石墨烯层之间的附加延迟库仑相互作用将与单个石墨烯层和导体表面之间的耦合竞争。因此,已经发现了一些独特的特征,例如在逆转区域内的三个杂交吸收峰和新的声学样石墨烯等离子体模式,用于双层石墨烯系统。实际上,我们的理论与常用的扰动理论相比是自我一致的,用于研究混合光等形图模式和在光子上的电子背部作用。代替通常的辐射或光栅偏转场耦合,引入了表面 - 离子 - 极性局部局部场耦合,以完全不同的分散关系,用于辐射(小波数)和渐逝(大波数)场模式。从技术上讲,可以采用恰好计算的有效散射矩阵来构建有效介质理论,以提高在数值上求解麦克斯韦方程的众所周知的有限差分时间域方法的准确性。实际上,预测的三杂交吸收峰可以仅能够激发极性官,从而产生可能的偏振凝固基于的激光器。

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