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Directional Fluorescence Emission by Individual V?Antennas Explained by Mode Expansion

机译:单个V天线的定向荧光发射,通过模式扩展来解释

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摘要

Specially designed plasmonic antennas can, by far-field interference of different antenna elements or a combination of multipolar antenna modes, scatter light unidirectionally, allowing for directional light control at the nanoscale. One of the most basic and compact geometries for such antennas is a nanorod with broken rotational symmetry, in the shape of the letter V. In this article, we show that these V-antennas unidirectionally scatter the emission of a local dipole source in a direction opposite the undirectional side scattering of a plane wave. Moreover, we observe high directivity, up to 6 dB, only for certain well-defined positions of the emitter relative to the antenna. By employing a rigorous eigenmode expansion analysis of the V-antenna, we fully elucidate the fundamental origin of its directional behavior. All findings are experimentally verified by measuring the radiation patterns of a scattered plane wave and the emission pattern of fluorescently doped PMMA positioned in different regions around the antenna. The fundamental interference effects revealed in the eigenmode expansion can serve as guidelines in the understanding and further development of nanoscale directional scatterers.
机译:特殊设计的等离子天线可以通过不同天线元件的远场干扰或多极天线模式的组合,单向散射光,从而可以在纳米级进行定向光控制。这种天线最基本,最紧凑的几何形状之一是纳米棒,其旋转对称性破坏,呈字母V形。在本文中,我们证明了这些V天线在一个方向上单向散射局部偶极子源的发射与平面波的无方向侧向散射相对。此外,我们仅在发射器相对于天线的某些明确定义的位置上观察到高达6 dB的高方向性。通过对V天线进行严格的本征模展开分析,我们充分阐明了其定向行为的基本起源。通过测量散射平面波的辐射方向图和位于天线周围不同区域的荧光掺杂的PMMA的发射方向图,可以对所有发现进行实验验证。本征模扩展中揭示的基本干扰效应可以作为理解和进一步发展纳米级定向散射体的指南。

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