Eriksen Mikkel Have, Tserkezis Christos, Mortensen N Asger, Cox Joel D
POLIMA - Center for Polariton-Driven Light-Matter Interactions, University of Southern Denmark, DK-5230 Odense, Denmark.
Danish Institute for Advanced Study, University of Southern Denmark, DK-5230 Odense, Denmark.
Nanophotonics. 2024 Apr 15;13(15):2741-2751. doi: 10.1515/nanoph-2023-0575. eCollection 2024 Jul.
Nonlocal and quantum mechanical phenomena in noble metal nanostructures become increasingly crucial when the relevant length scales in hybrid nanostructures reach the few-nanometer regime. In practice, such mesoscopic effects at metal-dielectric interfaces can be described using exemplary surface-response functions (SRFs) embodied by the Feibelman -parameters. Here we show that SRFs dramatically influence quantum electrodynamic phenomena - such as the Purcell enhancement and Lamb shift - for quantum light emitters close to a diverse range of noble metal nanostructures interfacing different homogeneous media. Dielectric environments with higher permittivities are shown to increase the magnitude of SRFs calculated within the specular-reflection model. In parallel, the role of SRFs is enhanced in noble metal nanostructures characterized by large surface-to-volume ratios, such as thin planar metallic films or shells of core-shell nanoparticles, for which the spill-in of electron wave functions enhances plasmon hybridization. By investigating emitter quantum dynamics close to such plasmonic architectures, we show that decreasing the width of the metal region, or increasing the permittivity of the interfacing dielectric, leads to a significant change in the Purcell enhancement, Lamb shift, and visible far-field spontaneous emission spectrum, as an immediate consequence of SRFs. We anticipate that fitting the theoretically modelled spectra to experiments could allow for experimental determination of the -parameters.
当混合纳米结构中的相关长度尺度达到几纳米范围时,贵金属纳米结构中的非局域和量子力学现象变得越来越重要。实际上,金属 - 电介质界面处的这种介观效应可以使用由费贝尔曼参数体现的示例性表面响应函数(SRF)来描述。在这里,我们表明,对于靠近与不同均匀介质界面的各种贵金属纳米结构的量子光发射器,SRF 会显著影响量子电动力学现象,如珀塞尔增强和兰姆位移。结果表明,具有较高介电常数的电介质环境会增加在镜面反射模型中计算的 SRF 的幅度。同时,SRF 的作用在以大表面积与体积比为特征的贵金属纳米结构中得到增强,例如薄平面金属膜或核壳纳米粒子的壳,对于这些结构,电子波函数的溢出增强了等离子体激元杂交。通过研究靠近此类等离子体结构的发射器量子动力学,我们表明,减小金属区域的宽度或增加界面电介质的介电常数,会导致珀塞尔增强、兰姆位移和可见远场自发发射光谱发生显著变化,这是 SRF 的直接结果。我们预计,将理论建模光谱与实验拟合可以实现对 - 参数的实验测定。