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Subwavelength leaky-wave optical nanoantennas: Directive radiation from linear arrays of plasmonic nanoparticles

机译:亚波长泄漏波光学纳米天线:等离子体纳米粒子线性阵列的定向辐射

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摘要

We analyze here the leaky-wave properties of linear arrays of plasmonic nanoparticles. It is shown that such periodic arrays may support two orthogonal leaky-wave propagation regimes, respectively, with longitudinal and transverse polarization. Using closed-form dispersion relations derived in the complex domain, we analyze their properties in the leaky-wave regime and we derive general conditions under which a nanoparticle array with subwavelength lateral cross section may support a radiating leaky mode with directive properties, conical radiation, frequency scanning and sufficiently long propagation distance, paving the way to potential applications as a leaky-wave optical nanoantenna with subdiffractive properties. Realistic designs and configurations are presented, considering the material dispersion and absorption of optical materials, for which we determine propagation distance, near-field distribution and far-field leaky-wave radiation pattern.
机译:我们在这里分析等离子体纳米粒子的线性阵列的泄漏波特性。示出了这样的周期阵列可以分别支持具有纵向和横向极化的两个正交泄漏波传播机制。使用在复杂域中得出的闭合形式的色散关系,我们分析了它们在漏波状态下的特性,并推导了一般条件,在这种条件下,具有亚波长横断面的纳米粒子阵列可以支持具有定向特性的辐射漏模,圆锥形辐射,频率扫描和足够长的传播距离,为具有亚衍射特性的漏波光学纳米天线的潜在应用铺平了道路。提出了现实的设计和配置,考虑了光学材料的材料色散和吸收,为此我们确定了传播距离,近场分布和远场泄漏波辐射方向图。

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