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Subwavelength metallic waveguides as a tool for extreme confinement of THz surface waves

机译:亚波长金属波导作为极端限制THz表面波的工具

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摘要

Research on surface waves supported by metals at THz frequencies is experiencing a tremendous growth due to their potential for imaging, biological sensing and high-speed electronic circuits. Harnessing their properties is, however, challenging because these waves are typically poorly confined and weakly bound to the metal surface. Many design strategies have been introduced to overcome these limitations and achieve increased modal confinement, including patterned surfaces, coated waveguides and a variety of sub-wavelength geometries. Here we provide evidence, using a combination of numerical simulations and time-resolved experiments, that shrinking the transverse size of a generic metallic structure always leads to solutions with extreme field confinement. The existence of such a general behavior offers a new perspective on energy confinement and should benefit future developments in THz science and technology.
机译:由于金属在成像,生物传感和高速电子电路方面的潜力,因此在THz频率下由金属支撑的表面波的研究正在蓬勃发展。然而,利用它们的特性是具有挑战性的,因为这些波通常约束较弱并且与金属表面的结合较弱。已经引入了许多设计策略来克服这些限制并实现增加的模态限制,包括图案化的表面,涂层波导和各种亚波长几何形状。在这里,我们通过结合数值模拟和时间分辨实验来提供证据,证明缩小通用金属结构的横向尺寸始终会导致极端场约束的解决方案。这种普遍行为的存在为能量限制提供了新的视角,并应有利于太赫兹科学技术的未来发展。

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