石墨烯纳米带异质结的拓扑增强非线性光学响应。

Quantum frontiers Pub Date : 2023-01-01 Epub Date: 2023-09-27 DOI:10.1007/s44214-023-00036-y
Hanying Deng, Zhihao Qu, Yingji He, Changming Huang, Nicolae C Panoiu, Fangwei Ye
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引用次数: 0

摘要

我们研究了由石墨烯纳米带(GNRs)制成的异质结的非线性光学性质,该异质结由具有相同或不同拓扑性质的两个片段组成。通过利用包含远邻居相互作用的量子力学方法,我们证明了拓扑界面态的存在显著增强了GNR异质结的二阶和三阶非线性光学响应,这些异质结是通过合并两个拓扑不等价的GNR而产生的。具体而言,具有拓扑界面态的GNR异质结显示出三阶谐波超极化率,其比没有拓扑界面状态的类似尺寸的异质结大两个数量级以上,而二阶谐波超极化率在具有和不具有拓扑界面态的异质结之间表现出超过十倍的对比。此外,我们发现在两个拓扑不同的GNR之间的界面处的拓扑状态可以引起异质结的量子等离子体频率的显著红移。我们的结果揭示了拓扑态的存在与石墨烯纳米结构和可能的其他光子系统增强的非线性光学响应之间的普遍而深刻的联系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Topologically enhanced nonlinear optical response of graphene nanoribbon heterojunctions.

Topologically enhanced nonlinear optical response of graphene nanoribbon heterojunctions.

We study the nonlinear optical properties of heterojunctions made of graphene nanoribbons (GNRs) consisting of two segments with either the same or different topological properties. By utilizing a quantum mechanical approach that incorporates distant-neighbor interactions, we demonstrate that the presence of topological interface states significantly enhances the second- and third-order nonlinear optical response of GNR heterojunctions that are created by merging two topologically inequivalent GNRs. Specifically, GNR heterojunctions with topological interface states display third-order harmonic hyperpolarizabilities that are more than two orders of magnitude larger than those of their similarly sized counterparts without topological interface states, whereas the second-order harmonic hyperpolarizabilities exhibit a more than ten-fold contrast between heterojunctions with and without topological interface states. Additionally, we find that the topological state at the interface between two topologically distinct GNRs can induce a noticeable red-shift of the quantum plasmon frequency of the heterojunctions. Our results reveal a general and profound connection between the existence of topological states and an enhanced nonlinear optical response of graphene nanostructures and possible other photonic systems.

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