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电驱动的卢廷格液体馈电等离子体纳米天线的设计原理

Design principles for electrically driven Luttinger liquid-fed plasmonic nanoantennas.

作者信息

Jeon Eun Su, Ko YoonYeong, Yoo SeokJae

机构信息

Department of Physics, Inha University, Incheon, Republic of Korea.

出版信息

Nanophotonics. 2023 Feb 16;12(13):2507-2516. doi: 10.1515/nanoph-2022-0782. eCollection 2023 Jun.

Abstract

Electrons injected into one-dimensional (1D) metals are efficiently converted into infrared plasmons because the unique property of the Luttinger liquid, a strongly correlated electronic matter in one-dimensional (1D) metals, prohibits excitations of other quasiparticles. Using the Luttinger liquid behavior, the electrically driven 1D metals can be used as a feed for optical nanoantennas. Nanoantennas can couple the 1D Luttinger liquid plasmons in the feed to the radiating photons in free space. In this work, we suggest design principles for the 1D metallic Luttinger liquid feed and the nanoantennas to obtain high injection and radiation efficiencies, respectively. We expect that our work can promote experimental efforts to realize electrically driven Luttinger liquid-fed nanoantennas and efficient infrared light sources.

摘要

注入到一维(1D)金属中的电子能有效地转化为红外等离子体激元,因为卢廷格液体具有独特性质,这种一维金属中的强关联电子物质会抑制其他准粒子的激发。利用卢廷格液体行为,电驱动的一维金属可作为光学纳米天线的馈源。纳米天线能将馈源中的一维卢廷格液体等离子体激元与自由空间中的辐射光子耦合。在这项工作中,我们分别提出了一维金属卢廷格液体馈源和纳米天线的设计原则,以获得高注入效率和辐射效率。我们期望我们的工作能够推动实现电驱动的卢廷格液体馈电纳米天线和高效红外光源的实验研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c58f/11501488/9f8bda33acaa/j_nanoph-2022-0782_fig_001.jpg

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