论文标题
底物对于“暗”等离子模式的可见性的重要性
The importance of substrates for the visibility of "dark" plasmonic modes
论文作者
论文摘要
黑暗的等离子模式具有有趣的属性,例如寿命更长和较窄的线宽,而线度较窄,而辐射性对应物的寿命也很少,也很少或没有辐射损失。但是,由于它们的光学无法获取,它们尚未进行广泛的研究。使用电子能量损失(EEL)和阴极发光(CL)光谱,在这项工作中系统地研究了薄的单晶金纳米棒中的深度径向呼吸模式(RBMS)。发现尽管只收集了远场,但可以在CL设置中检测到RBM。它们在Cl中的可见性归因于高折射率底物对镜像对称的破坏,从而产生了有效的偶极矩。证明,通过将支撑sin膜的厚度从5倍增加到50 nm,由于底物的净电偶极矩增加,因此可以通过增加5倍的含量来增强4倍。此外,可以通过改变纳米风险的直径来轻松调节RBM的共振能量,从而使它们成为有希望的纳米光子应用候选者。
Dark plasmonic modes have interesting properties, such as a longer lifetime and a narrower linewidth than their radiative counterpart, as well as little to no radiative losses. However, they have not been extensively studied yet due to their optical inaccessibility. Using electron-energy loss (EEL) and cathodoluminescence (CL) spectroscopy, the dark radial breathing modes (RBMs) in thin, monochrystalline gold nanodisks are systematically investigated in this work. It is found that the RBMs can be detected in a CL set-up despite only collecting the far-field. Their visibility in CL is attributed to the breaking of the mirror symmetry by the high-index substrate, creating an effective dipole moment. The outcoupling into the far-field is demonstrated to be enhanced by a factor of 4 by increasing the thickness of the supporting SiN membrane from 5 to 50 nm due to the increased net electric dipole moment in the substrate. Furthermore, it is shown that the resonance energy of RBMs can be easily tuned by varying the diameter of the nanodisk, making them promising candidates for nanophotonic applications.