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Nanoimaging of resonating hyperbolic polaritons in linear boron nitride antennas

机译:线性氮化硼天线中共振双曲极化子的纳米成像

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摘要

Polaritons in layered materials—including van der Waals materials—exhibit hyperbolic dispersion and strong field confinement, which makes them highly attractive for applications including optical nanofocusing, sensing and control of spontaneous emission. Here we report a near-field study of polaritonic Fabry–Perot resonances in linear antennas made of a hyperbolic material. Specifically, we study hyperbolic phonon–polaritons in rectangular waveguide antennas made of hexagonal boron nitride (h-BN, a prototypical van der Waals crystal). Infrared nanospectroscopy and nanoimaging experiments reveal sharp resonances with large quality factors around 100, exhibiting atypical modal near-field patterns that have no analogue in conventional linear antennas. By performing a detailed mode analysis, we can assign the antenna resonances to a single waveguide mode originating from the hybridization of hyperbolic surface phonon–polaritons (Dyakonov polaritons) that propagate along the edges of the h-BN waveguide. Our work establishes the basis for the understanding and design of linear waveguides, resonators, sensors and metasurface elements based on hyperbolic materials and metamaterials.
机译:层状材料(包括范德华材料)中的极化子表现出双曲线色散和强电场限制,这使其对光学纳米聚焦,传感和自发发射等应用具有高度吸引力。在这里,我们报告了由双曲线材料制成的线性天线中的极化法布里-珀罗共振的近场研究。具体来说,我们研究了六方氮化硼(h-BN,范德华原型晶体)制成的矩形波导天线中的双曲声子-极化子。红外纳米光谱和纳米成像实验揭示了在100左右的大质量因数下的尖锐共振,表现出非典型的模态近场方向图,在传统的线性天线中没有类似的模式。通过执行详细的模式分析,我们可以将天线谐振分配给单个波导模式,该模式源自沿h-BN波导边缘传播的双曲线表面声子-极化子(Dyakonov极化子)的杂交。我们的工作为理解和设计基于双曲线材料和超材料的线性波导,谐振器,传感器和超表面元素奠定了基础。

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