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Surface enhancement of THz wave by coupling a subwavelength LiNbO3 slab waveguide with a composite antenna structure

机译:通过将亚波长LiNbO3平板波导与复合天线结构耦合来对THz波进行表面增强

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摘要

Highly intense terahertz electromagnetic field and efficiently surface localized terahertz field in subwavelength volumes are of vital importance for terahertz photonics integration, also will greatly accelerate the development for integrated applications in biochemical sensing, imaging, terahertz spectroscopy, enhancement of nonlinear effects and even quantum research. In this paper, we achieved large terahertz field enhancement and surface field localization through depositing a pair of Au composite antennas on a LiNbO3 subwavelength slab waveguide, which can serve as an excellent on-chip platform for terahertz research and application. The antennas consist of two opposing tip-to-tip triangles separated by a gap, and each triangle combines with a strip antenna. Time-resolved imaging and finite-difference time-domain method were used to resolve the characteristics of the designed antennas experimentally and simulatively. Through these methods, we demonstrated outstanding abilities of the platform: leading to a large electric field enhancement, concentrating almost full terahertz energy on the waveguide’s surface when they are resonant with the terahertz waves and tunable resonant frequency. These abilities make the subwavelength waveguide coupling with the composite antennas be able to sever as a good integrated device to identify terahertz-sensitive small objects, or an excellent platform to terahertz spectroscopy and quantum research.
机译:亚波长体积中的高强度太赫兹电磁场和有效的表面局部太赫兹场对于太赫兹光子学积分至关重要,也将极大地加快在生化传感,成像,太赫兹光谱,增强非线性效应甚至量子研究等方面的集成应用的发展。本文通过在LiNbO3亚波长平板波导上沉积一对Au复合天线实现了太赫兹场的增强和表面场的局域化,这可以作为太赫兹研究和应用的优秀片上平台。天线由两个相对的,由间隙隔开的尖端到尖端的三角形组成,每个三角形与一个条形天线结合在一起。利用时间分辨成像和时域有限差分法,通过实验和仿真的方法解决了设计天线的特性。通过这些方法,我们展示了该平台的出色功能:增强了电场,当它们与太赫兹波和可调谐的共振频率共振时,将几乎全部太赫兹能量集中在波导表面。这些能力使得与复合天线耦合的亚波长波导能够被切断为识别太赫兹敏感小物体的良好集成设备,或者成为太赫兹光谱学和量子研究的绝佳平台。

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