Tunable terahertz slow light with hybrid coupling of a magnetic toroidal and electric dipole metasurface

Author:

Wang Guanchao1,Li Li1ORCID,Liu Chenxiang1,Li Shuai1,Guo Wenpeng1ORCID,Jia Yueying1,Li Zhenghao1,Tian Hao1234ORCID

Affiliation:

1. Harbin Institute of Technology

2. Ministry of Industry and Information Technology

3. Shanxi University

4. Heilongjiang Provincial Key Laboratory of Plasma Physics and Application Technology

Abstract

We present a hybrid coupling scheme of a magnetic toroidal and electric dipole metasurface with suppressed radiation loss, which can produce the tunable plasmon-induced transparency (PIT) with an enhanced slow-light effect in the terahertz regime. The terahertz metasurface is constructed by nesting a dual-split ring resonator (DSRR) inside a ring resonator (RR) to exploit the destructive coherence of hybrid electromagnetic mode coupling at the PIT resonance. The polarization-dependence excitation performs the active tunability of a PIT-induced group slowing down by rotating the polarization angle, experimentally achieving a maximum group delay of 3.5 ps. Furthermore, the modified terahertz metasurface with a four-split ring resonator (FSRR) nested in an RR is prepared on photoconductive silicon, demonstrating the pump-controllable group delay effect at the PIT resonance. The large group delay from 2.2 to 0.9 ps is dynamically tunable by adjusting the pump power. The experimental results are in good accord with the theoretical simulations.

Funder

Fundamental Research Funds for the Central Universities

National Natural Science Foundation of China

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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