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Terahertz Nanoresonators: Control and Measurements

机译:Terahertz纳米管:控制和测量

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摘要

We discuss a new and exciting area whereby terahertz science and technology meet nano-world and thin-film technology. We first show that a λ/30,000 nanogap on metal film can efficiently transmit terahertz electromagnetic waves whose wavelengths are in the millimeter range. It was found that the transmittance continues to increase as the frequency decreases with a dependence of 1/f. The field enhancement reaches the value of ~1000 at 0.1THz. The accumulation of charges at metal edges via light-induced currents creates a large horizontal electric field, which in effect attracts the incoming light, while the magnetic field enhancement is only orders of unity. Turning into two-dimensional nano-resonator, we design nano-antenna arrays that allow perfect transmission. Nanoresonators on VO{sub}2 thin films help amplify the available dynamic range for extinction and transmission when it undergoes insulator - metal phase transition.
机译:我们讨论了一个新的和令人兴奋的地区,即太赫兹科技符合纳米世界和薄膜技术。我们首先表明金属膜上的λ/ 30,000纳米剧可以有效地传输波长在毫米范围内的太赫兹电磁波。发现透射率随着频率的依赖性而达到1 / f而继续增加。现场增强率达到0.1thz的值〜1000。通过光诱导电流的金属边缘的电荷的积累产生了一个大的水平电场,其实际上吸引了进入光,而磁场增强仅是统一的顺序。转向二维纳米谐振器,我们设计允许完美传输的纳米天线阵列。 VO {SUB} 2薄膜的纳米末端有助于放大当灭火和传输时的可用动态范围 - 金属相位过渡。

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