Nonlinear directional emission on monolayer MoS 2 by optical orbit-orbit coupling

Controlling the direction of light emission on the subwavelength scale is a key to manipulating light and improving efficiency in optical sensing and quantum information processing. In functional metasurfaces, photonic spin angular momentum is widely used to control the propagation of light emission by geometric phase, but it is challenging to accomplish using monolayer materials because of lacking optical resonance in atomic thickness. Furthermore, the manipulation of the optical geometric phase based on spin angular momentum beams typically offers only two tunable states. Here, we report optical control of free-space routing of second harmonic generation in monolayer MoS 2 assisted by photonic orbital angular momenta. The experimental directionality of the second harmonic light can reach 0.84. Moreover, we can dynamically route the second harmonic generation signal on the engineered monolayer MoS 2 with four directions, showing high-order information encryption. Our findings thus provide great flexibility and more degrees of freedom in nonlinear optical modulation, integrated photonics, and dynamic flat optics.

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Publication Details

Journal
Science Advances
Published
2026-09-30
DOI
https://doi.org/10.1126/sciadv.aei3860
Primary Topic
Orbital Angular Momentum in Optics
Type
article
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Nonlinear directional emission on monolayer MoS 2 by optical orbit-orbit coupling

Yachao Zhang, Zhaohui Ye, Liumiao Gao, Zhenghong Li et al.
Science Advances
Orbital Angular Momentum in Optics
article

Nonlinear directional emission on monolayer MoS 2 by optical orbit-orbit coupling

Yachao Zhang, Zhaohui Ye, Liumiao Gao, Zhenghong Li, Dong Qing Wu, Jincheng Ni, Jiawen Li, Yang Chen, Xinghao Wang, Shibo Xu, Chaowei Wang, Xueli Jiang, Zhiyuan Yan, Xianglong Wang
article en

Abstract

Controlling the direction of light emission on the subwavelength scale is a key to manipulating light and improving efficiency in optical sensing and quantum information processing. In functional metasurfaces, photonic spin angular momentum is widely used to control the propagation of light emission by geometric phase, but it is challenging to accomplish using monolayer materials because of lacking optical resonance in atomic thickness. Furthermore, the manipulation of the optical geometric phase based on spin angular momentum beams typically offers only two tunable states. Here, we report optical control of free-space routing of second harmonic generation in monolayer MoS 2 assisted by photonic orbital angular momenta. The experimental directionality of the second harmonic light can reach 0.84. Moreover, we can dynamically route the second harmonic generation signal on the engineered monolayer MoS 2 with four directions, showing high-order information encryption. Our findings thus provide great flexibility and more degrees of freedom in nonlinear optical modulation, integrated photonics, and dynamic flat optics.

Science AdvancesVol. 12(40)
University of Science and Technology of China (CN), Anhui University (CN), Qilu University of Technology (CN), University of Macau (MO), Shandong Academy of Sciences (CN)
Affordable and clean energy
Openalex Percentile: Top 14%
Orbital Angular Momentum in Optics
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