Boriskin Artem V, Boriskina Svetlana V, Rolland Anthony, Sauleau Ronan, Nosich Alexander I
Institute of Radiophysics and Electronics NASU, Kharkiv, Ukraine.
J Opt Soc Am A Opt Image Sci Vis. 2008 May;25(5):1169-73. doi: 10.1364/josaa.25.001169.
Our objective is the assessment of the accuracy of a conventional finite-difference time-domain (FDTD) code in the computation of the near- and far-field scattering characteristics of a circular dielectric cylinder. We excite the cylinder with an electric or magnetic line current and demonstrate the failure of the two-dimensional FDTD algorithm to accurately characterize the emission rate and the field patterns near high-Q whispering-gallery-mode resonances. This is proven by comparison with the exact series solutions. The computational errors in the emission rate are then studied at the resonances still detectable with FDTD, i.e., having Q-factors up to 10(3).
我们的目标是评估传统时域有限差分(FDTD)算法在计算圆形介质圆柱体近场和远场散射特性时的准确性。我们用线电流源激励该圆柱体,并证明二维FDTD算法无法准确表征高Q回音壁模式共振附近的发射率和场分布。通过与精确的级数解进行比较证实了这一点。然后,针对FDTD仍可检测到的共振(即Q因子高达10³)研究发射率的计算误差。