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与局域表面等离激元极化激元耦合的共振能量转移的可控频率依赖性

Controllable Frequency Dependence of Resonance Energy Transfer Coupled with Localized Surface Plasmon Polaritons.

作者信息

Lee Ming-Wei, Hsu Liang-Yan

机构信息

Department of Chemistry, National Taiwan Normal University, Taipei 116, Taiwan.

Institute of Atomic and Molecular Sciences, Academia Sinica, Taipei 10617, Taiwan.

出版信息

J Phys Chem Lett. 2020 Aug 20;11(16):6796-6804. doi: 10.1021/acs.jpclett.0c01989. Epub 2020 Aug 7.

Abstract

We investigate the intrinsic characteristics of resonance energy transfer (RET) coupled with localized surface plasmon polaritons (LSPPs) from the perspective of macroscopic quantum electrodynamics. To quantify the effect of LSPPs, we propose a numerical scheme that allows us to accurately calculate the rate of RET between a donor-acceptor pair near a nanoparticle. Our study shows that LSPPs can be used to enhance the RET rate significantly and control its frequency dependence by modifying a core/shell structure, which indicates the possibility of RET rate optimization. Moreover, we systematically explore the angle (distance) dependence of the RET rate and analyze its origin. According to different frequency regimes, the angle dependence of RET is dominated by different mechanisms, such as LSPPs, surface plasmon polaritons (SPPs), and anti-resonance. For the proposed core/shell structure, the characteristic distance of RET coupled with LSPPs (approximately 0.05 emission wavelength) is shorter than that of RET coupled with SPPs (approximately 0.1 emission wavelength), which may provide promising applications in energy science.

摘要

我们从宏观量子电动力学的角度研究了与局域表面等离激元极化激元(LSPPs)耦合的共振能量转移(RET)的内在特性。为了量化LSPPs的效应,我们提出了一种数值方案,该方案使我们能够精确计算纳米颗粒附近供体-受体对之间的RET速率。我们的研究表明,LSPPs可用于显著提高RET速率,并通过修改核/壳结构来控制其频率依赖性,这表明了优化RET速率的可能性。此外,我们系统地探讨了RET速率的角度(距离)依赖性并分析了其起源。根据不同的频率范围,RET的角度依赖性由不同的机制主导,如LSPPs、表面等离激元极化激元(SPPs)和反共振。对于所提出的核/壳结构,与LSPPs耦合的RET的特征距离(约0.05发射波长)比与SPPs耦合的RET的特征距离(约0.1发射波长)短,这可能在能源科学中提供有前景的应用。

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