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20192023
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physics.optics2023

Deep Learning Enabled Design of Terahertz High-Q Metamaterials

Shan Yin, Haotian Zhong, Wei Huang +2

Metamaterials open up a new way to manipulate electromagnetic waves and realize various functional devices. Metamaterials with high-quality (Q) resonance responses are widely emplo…

physics.optics2023

Analogue of collectively induced transparency in metamaterials

Wei Huang, Shi-Ting Cao, Shi-Jun Liang +2

Most recently, a brand new optical phenomenon, collectively induced transparency (CIT) has already been proposed in the cavity quantum electrodynamics system, which comes from the…

physics.optics2021

Universal coupled theory for metamaterial Bound states in the continuum

Wei Huang, Songyi Liu, Jiaguang Han +3

In this paper, we present a novel universal coupled theory for metamaterial Bound states in the continuum (BIC) or quasi-Bound states in the continuum (quasi-BIC) which provides ul…

physics.optics2021

Broadband terahertz half-wave plate with multi-layers metamaterial via quantum engineering

Wei Huang, Xiaoyuan Hao, Yu Cheng +3

In this paper, we employ the novel design of the metamaterial half-wave plate by using the multiple layers of the metamaterials with some specific rotation angles. The rotation ang…

physics.optics2021

Electronic controllable broadband and robust terahertz surface plasmon-polaritons switch based on hybrid ITO waveguide coupler

Wei Huang, Erxiang Dong, Yu Cheng +5

The surface plasmon-polaritons (SPPs) switch is the key element of the integrated devices in optical computation and terahertz (THz) communications. In this paper, we propose a nov…

physics.optics2020

In-plane terahertz surface plasmon-polaritons coupler based on adiabatic following

Wei Huang, Xiaowei Qu, Shan Yin +3

We propose a robust and broadband integrated terahertz (THz) coupler based on the in-plane surface plasmon polaritons (SPPs) waveguides, conducted with the quantum coherent control…