Wu Jhih-Sheng, Lin Yen-Cheng, Sheu Yae-Lin, Hsu Liang-Yan
Center for Nano-Optics (CeNO) and Department of Physics and Astronomy , Georgia State University , Atlanta , Georgia 30303 , United States.
Institute of Atomic and Molecular Sciences , Academia Sinica , Taipei 10617 , Taiwan.
J Phys Chem Lett. 2018 Dec 20;9(24):7032-7039. doi: 10.1021/acs.jpclett.8b03429. Epub 2018 Dec 5.
We investigate resonance energy transfer (RET) between a donor-acceptor pair above a gold surface (including bulk and thin-film systems) and explore the distance/frequency dependence of RET enhancements using the theory we developed previously. The mechanism of RET above a gold surface can be attributed to the effects of mirror dipoles, surface plasmon polaritons (SPPs), and retardation. To clarify these effects on RET, we analyze the enhancements of RET by the mirror method, the decomposition of s- and p-polarization, and the SPP dispersion of charge-symmetric and charge-antisymmetric modes. We find a characteristic distance (approximately 1/10 of the wavelength) that can be used to classify the dominant effect on RET. Moreover, the characteristic distance can be shortened by narrowing the thickness of the thin-film systems, indicating that SPPs can enhance the rate of RET at a short range. The charge-symmetric and charge-antisymmetric modes of the thin films also allow us to engineer the maximum RET enhancement. We hope that our analysis inspires further investigation into the mechanism of RET coupled with SPPs and its applications.
我们研究了金表面(包括体材料和薄膜系统)上方供体-受体对之间的共振能量转移(RET),并使用我们之前开发的理论探索了RET增强的距离/频率依赖性。金表面上方RET的机制可归因于镜像偶极子、表面等离激元极化激元(SPP)和延迟效应。为了阐明这些对RET的影响,我们通过镜像法、s偏振和p偏振分解以及电荷对称和电荷反对称模式的SPP色散来分析RET的增强情况。我们发现了一个特征距离(约为波长的1/10),可用于对RET的主要影响进行分类。此外,通过缩小薄膜系统的厚度可以缩短特征距离,这表明SPP可以在短距离内提高RET速率。薄膜的电荷对称和电荷反对称模式也使我们能够设计最大的RET增强。我们希望我们的分析能够激发对与SPP耦合的RET机制及其应用的进一步研究。