Raza Søren, Kadkhodazadeh Shima, Christensen Thomas, Di Vece Marcel, Wubs Martijn, Mortensen N Asger, Stenger Nicolas
Department of Photonics Engineering, Technical University of Denmark, Kgs. Lyngby DK-2800, Denmark.
Center for Nanostructured Graphene (CNG), Technical University of Denmark, Kgs. Lyngby DK-2800, Denmark.
Nat Commun. 2015 Nov 5;6:8788. doi: 10.1038/ncomms9788.
Electron energy-loss spectroscopy can be used for detailed spatial and spectral characterization of optical excitations in metal nanoparticles. In previous electron energy-loss experiments on silver nanoparticles with radii smaller than 20 nm, only the dipolar surface plasmon resonance was assumed to play a role. Here, applying electron energy-loss spectroscopy to individual silver nanoparticles encapsulated in silicon nitride, we observe besides the usual dipole resonance an additional surface plasmon resonance corresponding to higher angular momenta for nanoparticle radii as small as 4 nm. We study the radius and electron beam impact position dependence of both resonances separately. For particles smaller than 4 nm in radius the higher-order surface plasmon mode disappears, in agreement with generalized non-local optical response theory, while the dipole resonance blueshift exceeds our theoretical predictions. Unlike in optical spectra, multipole surface plasmons are important in electron energy-loss spectra even of ultrasmall metallic nanoparticles.
电子能量损失谱可用于对金属纳米颗粒中的光学激发进行详细的空间和光谱表征。在之前对半径小于20纳米的银纳米颗粒进行的电子能量损失实验中,仅假定偶极表面等离子体共振起作用。在此,将电子能量损失谱应用于封装在氮化硅中的单个银纳米颗粒,我们观察到除了通常的偶极共振外,对于小至4纳米的纳米颗粒半径,还存在对应于更高角动量的附加表面等离子体共振。我们分别研究了两种共振的半径和电子束撞击位置依赖性。对于半径小于4纳米的颗粒,高阶表面等离子体模式消失,这与广义非局部光学响应理论一致,而偶极共振蓝移超过了我们的理论预测。与光谱不同,多极表面等离子体在电子能量损失谱中很重要,即使对于超小金属纳米颗粒也是如此。