Gu Ping, Chen Jiawei, Wan Mingjie, Chen Zhuo, Wang Zhenlin
Opt Express. 2017 Apr 17;25(8):9295-9304. doi: 10.1364/OE.25.009295.
We theoretically and experimentally investigate the multipolar hybrid plasmon-photon modes supported by a dielectric-metal core-shell resonator consisting of a dielectric core wrapped by a thin silver shell and the whispering-gallery modes in its pure dielectric counterpart (the dielectric sphere with the same size). We theoretically demonstrate that in a certain wavelength range the achievable maximum Q-factors of hybrid modes could be either larger or smaller than that of whispering-gallery modes, depending on the size of the resonator. By means of the coupling of the dye molecules to the hybrid and whispering-gallery modes, the reshaped fluorescence spectra are measured for resonators containing two different sized dye-doped dielectric spheres, which allow us to compare the Q-factors of hybrid and whispering-gallery modes, providing direct experimental support to the theoretical predictions. Our results provide guidance for appropriately choosing plasmonic core-shell (hybrid modes) or dielectric resonators (whispering-gallery modes) in applications such as ultrasensitive bio-sensors, low-threshold lasing, slow-light and nonlinear optical devices.
我们在理论和实验上研究了由薄银壳包裹的介质芯构成的介质-金属核壳谐振器所支持的多极混合等离激元-光子模式,以及其纯介质对应物(相同尺寸的介质球)中的回音壁模式。我们从理论上证明,在特定波长范围内,混合模式可实现的最大品质因数可能大于或小于回音壁模式的品质因数,这取决于谐振器的尺寸。通过将染料分子耦合到混合模式和回音壁模式,测量了包含两个不同尺寸的染料掺杂介质球的谐振器的重塑荧光光谱,这使我们能够比较混合模式和回音壁模式的品质因数,为理论预测提供了直接的实验支持。我们的结果为在超灵敏生物传感器、低阈值激光、慢光和非线性光学器件等应用中适当选择等离子体核壳(混合模式)或介质谐振器(回音壁模式)提供了指导。