Theoretical insights into charge transfer plasmon lifetime

Fuente: arXiv
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Autori principali: Koya, Alemayehu Nana, Li, Longnan, Li, Wei
Natura: Preprint
Pubblicazione: 2024
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author Koya, Alemayehu Nana
Li, Longnan
Li, Wei
author_facet Koya, Alemayehu Nana
Li, Longnan
Li, Wei
contents Understanding the spectral and temporal dynamics of charge transfer plasmon resonances that emerge in conductively connected plasmonic nanoparticles is crucial for exploiting their potentials for enhanced infrared spectroscopy and optical computing. In this article, we present a theoretical study based on classical electromagnetism to describe the spectral signature and dephasing time of charge transfer plasmons. By fitting the scattering curves and near-field amplitude oscillations, we determine the spectral linewidth and lifetime of charge transfer plasmons in conductively connected gold nanodisk dimers. We find that, compared with the well-known particle plasmons and dimer plasmons, charge transfer plasmons have a longer lifetime, which can be further extended by manipulating the geometric parameters of nanojunction and nanoparticles. Moreover, quantitative analyses of the optical near-field amplitude reveal that charge transfer plasmon modes oscillate completely out of phase with particle plasmon and dimer plasmon modes. The dephasing time and charge transfer rate are found to be on a few femtosecond timescale, implying that conductively connected plasmonic nanoparticles hold great promise as channels for coherent transfer of energy and information in future all-optical computing devices.
format Preprint
id arxiv_https___arxiv_org_abs_2406_17996
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Theoretical insights into charge transfer plasmon lifetime
Koya, Alemayehu Nana
Li, Longnan
Li, Wei
Optics
Understanding the spectral and temporal dynamics of charge transfer plasmon resonances that emerge in conductively connected plasmonic nanoparticles is crucial for exploiting their potentials for enhanced infrared spectroscopy and optical computing. In this article, we present a theoretical study based on classical electromagnetism to describe the spectral signature and dephasing time of charge transfer plasmons. By fitting the scattering curves and near-field amplitude oscillations, we determine the spectral linewidth and lifetime of charge transfer plasmons in conductively connected gold nanodisk dimers. We find that, compared with the well-known particle plasmons and dimer plasmons, charge transfer plasmons have a longer lifetime, which can be further extended by manipulating the geometric parameters of nanojunction and nanoparticles. Moreover, quantitative analyses of the optical near-field amplitude reveal that charge transfer plasmon modes oscillate completely out of phase with particle plasmon and dimer plasmon modes. The dephasing time and charge transfer rate are found to be on a few femtosecond timescale, implying that conductively connected plasmonic nanoparticles hold great promise as channels for coherent transfer of energy and information in future all-optical computing devices.
title Theoretical insights into charge transfer plasmon lifetime
topic Optics
url https://arxiv.org/abs/2406.17996