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研究偶极子激发的银纳米壳的等离子体特性:Mie 理论与有限元方法的比较。

Investigating the plasmonics of a dipole-excited silver nanoshell: Mie theory versus finite element method.

机构信息

Fitzpatrick Institute for Photonics & Department of Biomedical Engineering, Duke University, Durham, NC 27708, USA.

出版信息

Nanotechnology. 2010 Aug 6;21(31):315203. doi: 10.1088/0957-4484/21/31/315203. Epub 2010 Jul 15.

Abstract

This report compares COMSOL's finite element method (FEM) algorithm with the Mie theory for solving the electromagnetic fields in the vicinity of a silica-silver core-shell nanoparticle when excited by a radiating dipole. The novelty of this investigation lies in the excitation source of the nanoshell system: an oscillating electric dipole is frequently used as a model for both molecular scattering and molecular fluorescence; moreover, a common classical model of atomic or molecular spontaneous emission is a decaying electric dipole. The radiated power spectra were evaluated both analytically and numerically by integrating the Poynting vector around 20, 60 and 100 nm nanoshells, thereby solving the total and scattered fields generated by a dipole positioned inside the core and in the surrounding air medium, respectively. The agreement was excellent in amplitude, plasmon resonance peak position and full width at half-maximum. The FEM algorithm also generates accurate solutions of the near-field electromagnetics in the spatial domain, where the E-field behavior as a function of polar angle theta for a fixed observation radius was evaluated. The quasistatic approximation, which is valid for small nanoparticles, is also employed to assess its limitations relative to the Mie and FEM algorithms.

摘要

本报告将 COMSOL 的有限元法(FEM)算法与 Mie 理论进行了比较,以求解在受辐射偶极子激发时,二氧化硅-银核壳纳米粒子附近的电磁场。这项研究的新颖之处在于纳米壳系统的激励源:振荡电偶极子通常被用作分子散射和分子荧光的模型;此外,原子或分子自发发射的常见经典模型是衰减电偶极子。通过在 20、60 和 100nm 纳米壳周围积分坡印廷矢量,评估了辐射功率谱的解析和数值解,从而分别求解了位于核心内部和周围空气介质中的偶极子产生的总场和散射场。在幅度、等离子体共振峰位置和半峰全宽方面,结果吻合得非常好。FEM 算法还可以在空间域中生成近场电磁学的精确解,其中评估了在固定观察半径下,E 场作为极角θ的函数的行为。还采用了适用于小纳米粒子的准静态近似来评估其相对于 Mie 和 FEM 算法的局限性。

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