期刊文献+

Hybrid sub-gridding ADE–FDTD method of modeling periodic metallic nanoparticle arrays 被引量:2

Hybrid sub-gridding ADE–FDTD method of modeling periodic metallic nanoparticle arrays
下载PDF
导出
摘要 In this paper, a modified sub-gridding scheme that hybridizes the conventional finite-difference time-domain(FDTD)method and the unconditionally stable locally one-dimensional(LOD) FDTD is developed for analyzing the periodic metallic nanoparticle arrays. The dispersion of the metal, caused by the evanescent wave propagating along the metal-dielectric interface, is expressed by the Drude model and solved with a generalized auxiliary differential equation(ADE) technique.In the sub-gridding scheme, the ADE–FDTD is applied to the global coarse grids while the ADE–LOD–FDTD is applied to the local fine grids. The time step sizes in the fine-grid region and coarse-grid region can be synchronized, and thus obviating the temporal interpolation of the fields in the time-marching process. Numerical examples about extraordinary optical transmission through the periodic metallic nanoparticle array are provided to show the accuracy and efficiency of the proposed method. In this paper, a modified sub-gridding scheme that hybridizes the conventional finite-difference time-domain(FDTD)method and the unconditionally stable locally one-dimensional(LOD) FDTD is developed for analyzing the periodic metallic nanoparticle arrays. The dispersion of the metal, caused by the evanescent wave propagating along the metal-dielectric interface, is expressed by the Drude model and solved with a generalized auxiliary differential equation(ADE) technique.In the sub-gridding scheme, the ADE–FDTD is applied to the global coarse grids while the ADE–LOD–FDTD is applied to the local fine grids. The time step sizes in the fine-grid region and coarse-grid region can be synchronized, and thus obviating the temporal interpolation of the fields in the time-marching process. Numerical examples about extraordinary optical transmission through the periodic metallic nanoparticle array are provided to show the accuracy and efficiency of the proposed method.
作者 梁图禄 邵维 魏晓琨 梁木生 Tu-Lu Liang;Wei Shao;Xiao-Kun Wei;Mu-Sheng Liang(School of Physics,University of Electronic Science and Technology of China,Chengdu 610054,China)
机构地区 School of Physics
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第10期141-147,共7页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant Nos.61471105 and 61331007)
关键词 locally one-dimensional finite-difference time-domain metallic nanoparticle sub-gridding surface plasmon polaritons locally one-dimensional finite-difference time-domain metallic nanoparticle sub-gridding surface plasmon polaritons
  • 相关文献

同被引文献6

引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部