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Large area single crystal gold of single nanometer thickness for nanophotonics

Physics

Large area single crystal gold of single nanometer thickness for nanophotonics

C. Pan, Y. Tong, et al.

This groundbreaking research led by Chenxinyu Pan and colleagues showcases the fabrication of large-area single-crystal two-dimensional gold flakes. These ultrathin flakes, just a nanometer thick, exhibit unprecedented optical nonlinearity and hold immense potential for next-generation nanophotonic applications. Incredibly, they outshine their thicker counterparts in harmonic generation by over two orders of magnitude.... show more
Abstract
Two-dimensional single crystal metals, in which the behavior of highly confined optical modes is intertwined with quantum phenomena, are highly sought after for next-generation technologies. Here, we report large area (>10+ µm2), single crystal two-dimensional gold flakes (2DGFs) with thicknesses down to a single nanometer level, employing an atomic-level precision chemical etching approach. The decrease of the thickness down to such scales leads to the quantization of the electronic states, endowing 2DGFs with quantum-confinement-augmented optical nonlinearity, particularly leading to more than two orders of magnitude enhancement in harmonic generation compared with their thick polycrystalline counterparts. The nanometer-scale thickness and single crystal quality makes 2DGFs a promising platform for realizing plasmonic nanostructures with nanoscale optical confinement. This is demonstrated by patterning 2DGFs into nanoribbon arrays, exhibiting strongly confined near infrared plasmonic resonances with high quality factors. The developed 2DGFs provide an emerging platform for nanophotonic research and open up opportunities for applications in ultrathin plasmonic, optoelectronic and quantum devices.
Publisher
Nature Communications
Published On
Apr 02, 2024
Authors
Chenxinyu Pan, Yuanbiao Tong, Haoliang Qian, Alexey V. Krasavin, Jialin Li, Jiajie Zhu, Yiyun Zhang, Bowen Cui, Zhiyong Li, Chenming Wu, Lufang Liu, Linjun Li, Xin Guo, Anatoly V. Zayats, Limin Tong, Pan Wang
Tags
single crystal
gold flakes
optical nonlinearity
plasmons
nanophotonic devices
harmonic generation
quantum confinement
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