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Plasmonic Emission of Bullseye Nanoemitters on Bi2Te3 Nanoflakes

机译:Bi2Te3纳米薄片上靶心纳米发射体的等离子发射。

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摘要

Topological insulators, such as Bi Te , have been confirmed to exhibit plasmon radiation over the entire visible spectral range. Herein, we fabricate bullseye nanoemitters, consisting of a central disk and concentric gratings, on the Bi Te nanoflake. Due to the existence of edge plasmon modes, Bi Te bullseye nanostructures are possible to converge light towards the central disk. Taking advantage of the excellent spatial resolution of cathodoluminescence (CL) characterization, it has been observed that plasmonic behaviors depend on the excitation location. A stronger plasmonic intensity and a wider CL spectral linewidth can be obtained at the edge of the central disk. In order to further improve the focusing ability, a cylindrical Pt nanostructure has been deposited on the central disk. Additionally, the finite element simulation indicates that the electric-field enhancement originates from the coupling process between the plasmonic emission from the Bi Te bullseye and the Pt nanostructure. Finally, we find that enhancement efficiency depends on the thickness of the Pt nanostructure.
机译:拓扑绝缘体(例如Bi Te)已被证实在整个可见光谱范围内均具有等离子体辐射。本文中,我们在Bi Te纳米片上制造了由中央盘和同心光栅组成的靶心纳米发射器。由于存在边缘等离激元模式,Bi Te靶心纳米结构可能会向中心盘会聚光。利用阴极荧光(CL)表征的出色空间分辨率,已观察到等离子体激元行为取决于激发位置。在中心盘的边缘可以获得更强的等离子体强度和更宽的CL光谱线宽。为了进一步提高聚焦能力,圆柱形Pt纳米结构已经沉积在中心盘上。此外,有限元模拟表明,电场增强源自Bi Te牛眼的等离子体发射与Pt纳米结构之间的耦合过程。最后,我们发现增强效率取决于Pt纳米结构的厚度。

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