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具有亚纳米间隙的量子等离子体超表面中电子输运引起的极大三阶非线性光学效应。

Extremely large third-order nonlinear optical effects caused by electron transport in quantum plasmonic metasurfaces with subnanometer gaps.

作者信息

Takeuchi Takashi, Yabana Kazuhiro

机构信息

Center for Computational Sciences, University of Tsukuba, Tsukuba, 305-8577, Japan.

出版信息

Sci Rep. 2020 Dec 4;10(1):21270. doi: 10.1038/s41598-020-77909-y.

Abstract

In this study, a third-order nonlinear optical responses in quantum plasmonic metasurfaces composed of metallic nano-objects with subnanometer gaps were investigated using time-dependent density functional theory, a fully quantum mechanical approach. At gap distances of ≥ 0.6 nm, the third-order nonlinearities monotonically increased as the gap distance decreased, owing to enhancement of the induced charge densities at the gaps between nano-objects. Particularly, when the third harmonic generation overlapped with the plasmon resonance, a large third-order nonlinearity was achieved. At smaller gap distances down to 0.1 nm, we observed the appearance of extremely large third-order nonlinearity without the assistance of the plasmon resonance. At a gap distance of 0.1 nm, the observed third-order nonlinearity was approximately three orders of magnitude larger than that seen at longer gap distances. The extremely large third-order nonlinearities were found to originate from electron transport by quantum tunneling and/or overbarrier currents through the subnanometer gaps.

摘要

在本研究中,我们采用含时密度泛函理论(一种完全量子力学方法),对由具有亚纳米间隙的金属纳米物体组成的量子等离子体超表面中的三阶非线性光学响应进行了研究。在间隙距离≥0.6纳米时,由于纳米物体之间间隙处感应电荷密度的增强,三阶非线性随着间隙距离的减小而单调增加。特别地,当三次谐波产生与等离子体共振重叠时,实现了较大的三阶非线性。在小至0.1纳米的间隙距离下,我们观察到在没有等离子体共振辅助的情况下出现了极大的三阶非线性。在间隙距离为0.1纳米时,观察到的三阶非线性比在较长间隙距离时大约大三个数量级。发现这种极大的三阶非线性源于通过量子隧穿和/或通过亚纳米间隙的过势垒电流的电子传输。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11c8/7718924/69e89b7c4c9e/41598_2020_77909_Fig1_HTML.jpg

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