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基于连续统中的束缚态的太赫兹窄带滤波器超表面

Terahertz narrowband filter metasurfaces based on bound states in the continuum.

作者信息

Liu Yin, Zhang Qiankun, Xing Xiaohua, Zou Die, Mao Bingxuan, Yao Jianquan, Ouyang Chunmei, Wang Zhiyong, Wu Liang

出版信息

Opt Express. 2023 Oct 9;31(21):35272-35281. doi: 10.1364/OE.503399.

Abstract

The electromagnetically induced transparency (EIT) effect realized by metasurfaces have potential for narrowband filtering due to their narrow bandwidth. In optics, bound states in the continuum (BIC) can produce strong localized resonances, which means that light can be trapped and stored for long periods of time to produce very high Q-factors. This has potential applications in designing highly efficient sensors and narrow bandpass filters. Here, we present two metal-flexible dielectric metasurfaces consisting of copper structures and polyimide substrates. Quasi BICs are obtained by breaking C2 symmetry of the metal structures. Resonance-captured quasi-BICs with ultra-high q-factor resonances satisfy the dark modes required to realize the EIT and couple to the bright modes in the structure to achieve narrowband filtering. The peak transmission rates are around 0.9 at 0.29 THz-0.32 THz and 0.23 THz-0.27 THz, respectively. Our results have practical implications for the realization of low-frequency terahertz communications.

摘要

超表面实现的电磁诱导透明(EIT)效应因其窄带宽而具有窄带滤波的潜力。在光学中,连续统中的束缚态(BIC)可以产生强烈的局域共振,这意味着光可以被捕获并长时间存储以产生非常高的品质因数。这在设计高效传感器和窄带通滤波器方面具有潜在应用。在此,我们展示了两种由铜结构和聚酰亚胺基板组成的金属-柔性介质超表面。通过打破金属结构的C2对称性获得准BIC。具有超高品质因数共振的共振捕获准BIC满足实现EIT所需的暗模式,并与结构中的亮模式耦合以实现窄带滤波。峰值传输率分别在0.29太赫兹 - 0.32太赫兹和0.23太赫兹 - 0.27太赫兹处约为0.9。我们的结果对实现低频太赫兹通信具有实际意义。

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