Continuous terahertz omnidirectional beam steering by dual diffraction of metagratings

Author:

Cheng Jie-Rong1,Yang Yang,Chen Sai2ORCID,Wen Qi-Ye3ORCID,Ji Yun-Yun4ORCID,Fan Fei4,Chang Sheng-Jiang4

Affiliation:

1. Tianjin Key Laboratory of Micro-Scale Optical Information Science and Technology

2. School of Electronic and Information Engineering, Beihang University

3. State Key Laboratory of Electronic Thin Films and Integrated Devices, University of Electronic Science and Technology of China

4. Tianjin Key Laboratory of Optoelectronic Sensor and Sensing Network Technology

Abstract

Dynamic beam steering with unlimited angular range and fast speed remains a challenge in the terahertz gap, which is urgently needed for next-generation target tracking, wireless communications, and imaging applications. Different from metasurface phased arrays with element-level phase control, here we steer the beam by globally engineering the diffraction of two cascaded metagratings during in-plane rotation. Benefiting from large-angle diffraction and flexible on/off control of the diffraction channels, a pair of metagratings with optimized supercells and proper orientation successfully directs the incoming beam towards any arbitrary direction over the transmission half space, with the steering speed improved more than twice that of the small-angle diffractive designs. Single-beam and dual-beam steering within the solid angle of 1.56 π and elevation angle of ± 77 ° has been demonstrated with average throughput efficiency of 41.4% at 0.14 THz, which can be generalized to multiple-beam cases. The dual diffraction engineering scheme offers a clear physical picture for beamforming and greatly simplifies the device structure, with additional merits of large aperture and low power consumption.

Funder

National Key Research and Development Program of China

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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