Institut des Sciences Moléculaires d'Orsay, CNRS - Université Paris-Sud (UMR 8214) , Orsay, France.
Nano Lett. 2013 Sep 11;13(9):4198-205. doi: 10.1021/nl401874m. Epub 2013 Aug 13.
We report on the angular distribution, polarization, and spectrum of the light emitted from an electrically controlled nanoscale light source. This nanosource of light arises from the local, low-energy, electrical excitation of localized surface plasmons (LSP) on individual gold nanoparticles using a scanning tunneling microscope (STM). The gold nanoparticles (NP) are chemically synthesized truncated bitetrahedrons. The emitted light is collected through the transparent substrate and the emission characteristics (angular distribution, polarization, and spectrum) are analyzed. These three observables are found to strongly depend on the lateral position of the STM tip with respect to the triangular upper face of the gold NP. In particular, the resulting light emission changes orientation when the electrical excitation via the STM tip is moved from the base to the vertex of the triangular face. On the basis of the comparison of the experimental observations with an analytical dipole model and finite-difference time-domain (FDTD) calculations, we show that this behavior is linked to the selective excitation of the out-of-plane and in-plane dipolar LSP modes of the NP. This selective excitation is achieved through the lateral position of the tip with respect to the symmetry center of the NP.
我们报告了电控制的纳米光源所发射光的角分布、偏振和光谱。这种光源于使用扫描隧道显微镜 (STM) 对单个金纳米粒子上的局域表面等离激元 (LSP) 进行局部、低能量、电激发而产生的纳米光源。金纳米粒子 (NP) 是通过化学合成的截角四面体。发射光通过透明衬底收集,并分析其发射特性(角分布、偏振和光谱)。这三个可观测量强烈依赖于 STM 尖端相对于金 NP 三角形上表面的横向位置。特别是,当通过 STM 尖端的电激发从基极移动到三角形面的顶点时,光发射的方向会发生变化。基于实验观察与解析偶极子模型和有限差分时域 (FDTD) 计算的比较,我们表明这种行为与 NP 的面外和面内偶极 LSP 模式的选择性激发有关。这种选择性激发是通过尖端相对于 NP 对称中心的横向位置来实现的。