Kang J H, Kim D S, Park Q-Han
Department of Physics, Korea University, Seoul, 136-701, Korea.
Phys Rev Lett. 2009 Mar 6;102(9):093906. doi: 10.1103/PhysRevLett.102.093906.
We present a local capacitor model that enables a simple yet quantitatively accurate description of lightning rod effect in nanoplasmonics. A notion of lambda-zone capacitance is proposed and applied to predict the strongly induced electric field by a light source near nanoscale metal edges such as metal tip or metal gap. The enhancement factor, calculated from the local capacitor model, shows excellent agreement with more rigorous results. The lambda-zone capacitor allows a blockwise treatment of nano-optical devices and constitutes a basic element of optical nanocircuits.
我们提出了一种局部电容模型,该模型能够对纳米等离子体中的避雷针效应进行简单而定量准确的描述。提出了λ区电容的概念,并将其应用于预测纳米级金属边缘(如金属尖端或金属间隙)附近光源强烈感应的电场。根据局部电容模型计算出的增强因子与更严格的结果显示出极好的一致性。λ区电容允许对纳米光学器件进行分块处理,并构成光学纳米电路的基本元件。