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过渡金属二硫族化物超表面的可调谐单向非线性发射

Tunable unidirectional nonlinear emission from transition-metal-dichalcogenide metasurfaces.

作者信息

Nauman Mudassar, Yan Jingshi, de Ceglia Domenico, Rahmani Mohsen, Zangeneh Kamali Khosro, De Angelis Costantino, Miroshnichenko Andrey E, Lu Yuerui, Neshev Dragomir N

机构信息

School of Engineering, Australian National University, Canberra, ACT, 2601, Australia.

ARC Centre of Excellence for Transformative Meta-Optical Systems, Department of Electronic Materials Engineering, Research School of Physics, The Australian National University, Canberra, ACT, 2601, Australia.

出版信息

Nat Commun. 2021 Sep 22;12(1):5597. doi: 10.1038/s41467-021-25717-x.

Abstract

Nonlinear light sources are central to a myriad of applications, driving a quest for their miniaturisation down to the nanoscale. In this quest, nonlinear metasurfaces hold a great promise, as they enhance nonlinear effects through their resonant photonic environment and high refractive index, such as in high-index dielectric metasurfaces. However, despite the sub-diffractive operation of dielectric metasurfaces at the fundamental wave, this condition is not fulfilled for the nonlinearly generated harmonic waves, thereby all nonlinear metasurfaces to date emit multiple diffractive beams. Here, we demonstrate the enhanced single-beam second- and third-harmonic generation in a metasurface of crystalline transition-metal-dichalcogenide material, offering the highest refractive index. We show that the interplay between the resonances of the metasurface allows for tuning of the unidirectional second-harmonic radiation in forward or backward direction, not possible in any bulk nonlinear crystal. Our results open new opportunities for metasurface-based nonlinear light-sources, including nonlinear mirrors and entangled-photon generation.

摘要

非线性光源是众多应用的核心,推动了将其小型化至纳米尺度的探索。在这一探索过程中,非线性超表面极具潜力,因为它们通过其共振光子环境和高折射率来增强非线性效应,例如在高折射率介电超表面中。然而,尽管介电超表面在基波下具有亚衍射操作,但对于非线性产生的谐波而言,这一条件并不满足,因此迄今为止所有的非线性超表面都会发射多个衍射光束。在此,我们展示了在具有最高折射率的晶体过渡金属二硫属化物材料的超表面中增强的单光束二次谐波和三次谐波产生。我们表明,超表面的共振之间的相互作用允许在向前或向后方向上调谐单向二次谐波辐射,这在任何块状非线性晶体中都是不可能的。我们的结果为基于超表面的非线性光源开辟了新的机会,包括非线性镜和纠缠光子的产生。

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