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Monochromatic Multimode Antennas on Epsilon-Near-Zero Materials

机译:Epsilon近零材料上的单色多模天线

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Optical antennas couple propagating optical fields into confined modes. The spectral position and spatial extent of the confined modes are most often engineered via the design of the antenna. However, while often relegated to a secondary role, the dielectric environment can drastically alter the optical response of antennas. Here, antennas on an epsilon-near-zero materiala material with a vanishing permittivityare fabricated and characterized, demonstrating pinning of the fundamental antenna mode and the two subsequent harmonics to a narrow wavelength range. The spectral pinning of multiple modes results in what is a nearly monochromatic, yet multimode, response for the system. Coupling of these modes to the epsilon-near-zero Berreman mode supported by the thin epsilon-near-zero material is also observed. The response of the coupled system is observed experimentally and simulated using finite element methods. A coupled resonator model is developed to intuitively model the optical response of the system. The results presented here offer a mechanism for engineering the optical response of antenna systems by engineering the local dielectric environment, with potential applications in sensing, imaging, infrared optoelectronics, and thermal emission control.
机译:光学天线将传播的光场耦合到受限模式中。受限模式的频谱位置和空间范围通常是通过天线设计来设计的。然而,尽管通常降级为次要角色,但介电环境却可以极大地改变天线的光学响应。在此,制造并表征了在ε接近零的材料上具有消失的介电常数的天线,并证明了基本天线模式和随后的两个谐波在窄波长范围内的固定。多种模式的光谱固定会导致系统产生接近单色但多模的响应。还观察到这些模式与稀薄的ε-接近零的材料所支持的ε-接近零的Berreman模式的耦合。通过实验观察耦合系统的响应,并使用有限元方法进行仿真。开发了耦合谐振器模型以直观地建模系统的光学响应。本文介绍的结果提供了一种通过工程化本地介电环境来工程化天线系统的光响应的机制,并在传感,成像,红外光电和热发射控制方面具有潜在的应用。

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