• Laser & Optoelectronics Progress
  • Vol. 58, Issue 21, 2124001 (2021)
Zhongyi Wu, Xiaofeng Shi*, Lizhen Ma, and Jun Ma
Author Affiliations
  • Optics and Optoelectronics Laboratory of Qingdao, Ocean University of China, Qingdao , Shandong 266100, China
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    DOI: 10.3788/LOP202158.2124001 Cite this Article Set citation alerts
    Zhongyi Wu, Xiaofeng Shi, Lizhen Ma, Jun Ma. FDTD Simulation and Evaluation Method for Large Size Aggregates of Nanoparticles[J]. Laser & Optoelectronics Progress, 2021, 58(21): 2124001 Copy Citation Text show less
    Grid discretization method and local electric field magnetic distribution of gold nanosphere dimer. (a) Dispersion of fine and uniform grid; (b) sub-grid dispersion
    Fig. 1. Grid discretization method and local electric field magnetic distribution of gold nanosphere dimer. (a) Dispersion of fine and uniform grid; (b) sub-grid dispersion
    Boundary transition diagram of coarse and uniform grid and sub-grid
    Fig. 2. Boundary transition diagram of coarse and uniform grid and sub-grid
    Electromagnetic field distribution and K-means clustering result of interaction between gold nanosphere disk aggregates and electromagnetic field. (a) Electromagnetic field distribution of gold nanosphere disk array in range of 3 μm; (b) clustering of three electric field data by K-means clustering
    Fig. 3. Electromagnetic field distribution and K-means clustering result of interaction between gold nanosphere disk aggregates and electromagnetic field. (a) Electromagnetic field distribution of gold nanosphere disk array in range of 3 μm; (b) clustering of three electric field data by K-means clustering
    Relationship between among average enhancement factors AEF 1 and AEF 2 of gold nanosphere dimer, and spacing
    Fig. 4. Relationship between among average enhancement factors AEF 1 and AEF 2 of gold nanosphere dimer, and spacing
    Relationship between among average enhancement factors AEF 1 and AEF 2 of gold nanospheres, and number of gold nanoparticles
    Fig. 5. Relationship between among average enhancement factors AEF 1 and AEF 2 of gold nanospheres, and number of gold nanoparticles
    Relationship between among average enhancement factors AEF 1 and AEF 2 of disk aggregates of gold nanospheres with diameters of 3 μm, and spacing of nanoparticles
    Fig. 6. Relationship between among average enhancement factors AEF 1 and AEF 2 of disk aggregates of gold nanospheres with diameters of 3 μm, and spacing of nanoparticles
    Computing methodSpatial step /nmTime step /fsSimulation time /sMemory usage /MB
    Fine grid0.50.00095191822501172
    Sub-grid0.5(fine part)0.0009532871408218
    <5.5(interim part)
    Table 1. Computational resources and occupancy details of two kinds of meshing methods in gold nanosphere dimer model
    Zhongyi Wu, Xiaofeng Shi, Lizhen Ma, Jun Ma. FDTD Simulation and Evaluation Method for Large Size Aggregates of Nanoparticles[J]. Laser & Optoelectronics Progress, 2021, 58(21): 2124001
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