Unconventional quantization of 2D plasmons in cavities formed by gate slots

Fuente: arXiv
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Main Authors: Moiseenko, Ilia, Devizorova, Zhanna, Polischuk, Olga, Muravev, Viacheslav, Svintsov, Dmitry
Format: Preprint
Published: 2025
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author Moiseenko, Ilia
Devizorova, Zhanna
Polischuk, Olga
Muravev, Viacheslav
Svintsov, Dmitry
author_facet Moiseenko, Ilia
Devizorova, Zhanna
Polischuk, Olga
Muravev, Viacheslav
Svintsov, Dmitry
contents We demonstrate that the slot between parallel metal gates placed above two-dimensional electron system (2DES) forms a plasmonic cavity with unconventional mode quantization. The resonant plasmon modes are excited when the slot width $L$ and the plasmon wavelength $λ$ satisfy the condition $L = λ/8 +n \times λ/2$, where $n=0, 1, 2 \ldots$. The lowest resonance occurs at a surprisingly small cavity size, specifically one eighth of the plasmon wavelength, which contrasts with the conventional half-wavelength Fabry-Perot cavities in optics. This unique quantization rule arises from a non-trivial phase shift of $-π/4$ acquired by the 2D plasmon upon reflection from the edge of the gate. The slot plasmon modes exhibit weak decay into the gated 2DES region, with the decay rate being proportional to the square root of the separation between the gate and the 2DES. Absorption cross-section by such slots reaches $\sim 50$ % of the fundamental dipole limit without any matching strategies, and is facilitated by field enhancement at the metal edges.
format Preprint
id arxiv_https___arxiv_org_abs_2511_03829
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Unconventional quantization of 2D plasmons in cavities formed by gate slots
Moiseenko, Ilia
Devizorova, Zhanna
Polischuk, Olga
Muravev, Viacheslav
Svintsov, Dmitry
Mesoscale and Nanoscale Physics
Optics
We demonstrate that the slot between parallel metal gates placed above two-dimensional electron system (2DES) forms a plasmonic cavity with unconventional mode quantization. The resonant plasmon modes are excited when the slot width $L$ and the plasmon wavelength $λ$ satisfy the condition $L = λ/8 +n \times λ/2$, where $n=0, 1, 2 \ldots$. The lowest resonance occurs at a surprisingly small cavity size, specifically one eighth of the plasmon wavelength, which contrasts with the conventional half-wavelength Fabry-Perot cavities in optics. This unique quantization rule arises from a non-trivial phase shift of $-π/4$ acquired by the 2D plasmon upon reflection from the edge of the gate. The slot plasmon modes exhibit weak decay into the gated 2DES region, with the decay rate being proportional to the square root of the separation between the gate and the 2DES. Absorption cross-section by such slots reaches $\sim 50$ % of the fundamental dipole limit without any matching strategies, and is facilitated by field enhancement at the metal edges.
title Unconventional quantization of 2D plasmons in cavities formed by gate slots
topic Mesoscale and Nanoscale Physics
Optics
url https://arxiv.org/abs/2511.03829