在拓扑绝缘体元元件中利用可调谐色散追踪太赫兹等离子体激元

IF 23.4 Q1 OPTICS
Leonardo Viti, Chiara Schiattarella, Lucia Sichert, Zhengtianye Wang, Stephanie Law, Oleg Mitrofanov, Miriam S. Vitiello
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引用次数: 0

摘要

二维材料中无质量载流子的集体振荡-狄拉克等离子激元(DPPs) -对于具有可调谐光响应的工程纳米光子器件具有至关重要的意义。然而,在纳米材料中定制DPP的光学特性是一项非常具有挑战性的任务,特别是在太赫兹(THz)频率下,DPP动量比自由空间光子的动量大一个数量级以上,并且DDP衰减很高。在这里,我们设想并演示了一种调整拓扑绝缘体超材料中DPP色散的策略。我们设计了横向耦合的线性元元件,由外延Bi2Se3制造,具有选定的耦合距离,目的是通过几何来调整其波向量。我们通过相敏散射型扫描近场纳米显微镜发射并直接映射了耦合元原子内dpp的传播。我们证明了DPP波长可以通过改变元元件耦合距离来调谐,导致二聚体和三聚体中1 μm间距的极化子波矢量Re(kp)增加20%,损耗减少,极化子衰减长度增加50%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Tracing terahertz plasmon polaritons with a tunable-by-design dispersion in topological insulator metaelements

Tracing terahertz plasmon polaritons with a tunable-by-design dispersion in topological insulator metaelements

Collective oscillations of massless charge carriers in two-dimensional materials—Dirac plasmon polaritons (DPPs)—are of paramount importance for engineering nanophotonic devices with tunable optical response. However, tailoring the optical properties of DPPs in a nanomaterial is a very challenging task, particularly at terahertz (THz) frequencies, where the DPP momentum is more than one order of magnitude larger than that of the free-space photons, and DDP attenuation is high. Here, we conceive and demonstrate a strategy to tune the DPP dispersion in topological insulator metamaterials. We engineer laterally coupled linear metaelements, fabricated from epitaxial Bi2Se3, with selected coupling distances with the purpose to tune their wavevector, by geometry. We launch and directly map the propagation of DPPs confined within coupled meta-atoms via phase-sensitive scattering-type scanning near-field nanoscopy. We demonstrate that the DPP wavelength can be tuned by varying the metaelements coupling distance, resulting in up to a 20% increase of the polariton wavevector Re(kp) in dimers and triplets with a 1 μm spacing, with reduced losses and a >50% increase of the polariton attenuation length.

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来源期刊
Light-Science & Applications
Light-Science & Applications 数理科学, 物理学I, 光学, 凝聚态物性 II :电子结构、电学、磁学和光学性质, 无机非金属材料, 无机非金属类光电信息与功能材料, 工程与材料, 信息科学, 光学和光电子学, 光学和光电子材料, 非线性光学与量子光学
自引率
0.00%
发文量
803
审稿时长
2.1 months
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