吉首大学学报(自然科学版) ›› 2025, Vol. 46 ›› Issue (4): 52-60.DOI: 10.13438/j.cnki.jdzk.2025.04.008

• 物理 • 上一篇    下一篇

量子效应对双同心钠纳米球壳吸收光谱的影响

张明富,单馨雨,黄勇刚   

  1. (吉首大学物理与机电工程学院,湖南 吉首 416000)
  • 出版日期:2025-07-25 发布日期:2025-08-05
  • 作者简介:张明富(1997—),男,湖南保靖人,吉首大学物理与机电工程学院硕士研究生,主要从事光与物质相互作用研究
  • 基金资助:
    国家自然科学基金资助项目(12464049);湖南省教育厅科学研究项目(24C0254,22A0373,22A0377);吉首大学科研项目(JD23005);吉首大学学位与研究生教学改革研究项目(JG2022B01)

Quantum Effects on the Absorption Spectrum of Double Concentric Na Nanoshells

ZHANG Mingfu,SHAN Xinyu,HUANG Yonggang   

  1. (College of Physics and Electromechanical Engineering,Jishou University,Jishou 416000,Hunan China)
  • Online:2025-07-25 Published:2025-08-05

摘要:采用量子流体动力学模型(QHDM)探究了量子效应对双同心钠纳米球壳吸收光谱的影响,并将结果与局域响应近似模型(LRAM)和硬壁流体动力学模型(HDM)的结果进行了对比.基于耦合模理论,分析了单壳层内外表面共振模式的耦合特性,以及双同心钠纳米球壳表面等离激元共振特性.结果表明,对于单壳层结构,LRAM预测,随着壳内半径的增大,低能量模式红移,高能量模式蓝移,而随着壳层厚度的增大,低能量模式蓝移,高能量模式红移;对于双同心钠纳米球壳结构,当壳间距较大时,与LRAM预测相比,HDM预测的2个高能量模式明显蓝移,QHDM预测的2个高能量模式明显红移;对于双同心钠纳米球壳结构,当外壳厚度较大时,与LRAM预测相比,HDM与QHDM预测的2个低能量模式轻微蓝移,HDM预测的2个高能量模式明显蓝移,QHDM预测的2个高能量模式明显红移.

关键词: 表面等离激元, 吸收光谱, 量子流体动力学模型, 双同心钠纳米球壳

Abstract: To investigate the quantum effects on the absorption spectra of double concentric sodium nanoshells and compare them with the local response approximation model (LRAM) and hard-wall hydrodynamic model (HDM),the quantum hydrodynamic model (QHDM) was employed based on coupled-mode theory to analyze the coupling characteristics of resonance modes on the inner and outer surfaces of a single shell,as well as the surface plasmon resonance properties of double concentric sodium nanoshells.The results indicate that,for a single-shell structure,LRAM predicts that as the inner cavity radius increases,the low-energy mode redshifts while the high-energy mode blueshifts;when the shell thickness increases,the low-energy mode blueshifts while the high-energy mode redshifts.In the case of the double concentric sodium nanosphere shell structure,when the spacing between shells is large,the two high-energy modes predicted by the HDM model exhibit a significant blueshift compared to LRAM predictions,whereas the same modes predicted by the QHDM model show a substantial redshift.Furthermore,when the outer shell thickness is large,the two low-energy modes predicted by both HDM and QHDM exhibit a slight blueshift relative to LRAM predictions,while the two high-energy modes predicted by HDM show a significant blueshift and those predicted by QHDM demonstrate a significant redshift.

Key words: surface plasmonic, absorption spectrum, quantum hydrodynamic model, double concentric Na nanoshells

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