Tunable unidirectional nonlinear emission from transition-metal-dichalcogenide metasurfaces

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作者
Mudassar Nauman
Jingshi Yan
Domenico de Ceglia
Mohsen Rahmani
Khosro Zangeneh Kamali
Costantino De Angelis
Andrey E. Miroshnichenko
Yuerui Lu
Dragomir N. Neshev
机构
[1] School of Engineering,Department of Information Engineering
[2] Australian National University,Department of Information Engineering
[3] ARC Centre of Excellence for Transformative Meta-Optical Systems,undefined
[4] Department of Electronic Materials Engineering,undefined
[5] Research School of Physics,undefined
[6] The Australian National University,undefined
[7] University of Padova,undefined
[8] Advanced Optics and Photonics Laboratory,undefined
[9] Department of Engineering,undefined
[10] School of Science and Technology,undefined
[11] Nottingham Trent University,undefined
[12] University of Brescia,undefined
[13] School of Engineering and Information Technology,undefined
[14] University of New South Wales,undefined
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摘要
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.
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