Nonlinear Terahertz Generation: Chiral and Achiral Meta‐Atom Coupling

Author:

Wang Qingwei1,Zhang Xueqian1ORCID,Xu Quan1,Feng Xi1,Lu Yongchang1,Niu Li1,Chen Xieyu1,Plum Eric2,Gu Jianqiang1,Yang Quanlong3,Fang Ming4,Huang Zhixiang4,Zhang Shuang5,Han Jiaguang16,Zhang Weili7

Affiliation:

1. Center for Terahertz Waves and College of Precision Instrument and Optoelectronics Engineering, and the Key Laboratory of Optoelectronics Information and Technology Tianjin University Tianjin 300072 P. R. China

2. Optoelectronics Research Centre and Centre for Photonic Metamaterials University of Southampton Highfield Southampton SO17 1BJ UK

3. School of Physics and Electronics Central South University Changsha Hunan 410083 P. R. China

4. Key Laboratory of Intelligent Computing and Signal Processing Ministry of Education Anhui University Hefei 230039 P. R. China

5. Department of Physics Faculty of Science University of Hong Kong Hong Kong 999077 P. R. China

6. Guangxi Key Laboratory of Optoelectronic Information Processing School of Optoelectronic Engineering Guilin University of Electronic Technology Guilin 541004 P. R. China

7. School of Electrical and Computer Engineering Oklahoma State University Stillwater Oklahoma 74078 USA

Abstract

AbstractGeneration and manipulation of terahertz (THz) waves are of vital importance for advancing THz technology. Nonlinear metasurfaces allow effective integration of both processes into a single compact device. However, such existing THz devices commonly rely on utilizing a single meta‐atom, which has fixed THz generation properties and thus limits the range of achievable functionalities. Here, it is demonstrate how coupling between different meta‐atoms within the unit‐cell can be used as a degree of freedom for controlling nonlinear THz generation, where achiral coupling provides full control over the amplitude of the generated THz field, while chiral coupling makes the THz generation sensitive to the handedness of the pump polarization. In particular, chiral coupling allows the realization of multiplexed pump‐handedness‐selective nonlinear metasurfaces, which is illustrated experimentally by selectively generating THz beams with different orbital angular momentum with a single nonlinear metasurface. This approach provides opportunities for developing various integrated nonlinear THz devices.

Funder

National Natural Science Foundation of China

Engineering and Physical Sciences Research Council

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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