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Hybrid finite-difference time-domain Fresnel modeling of microscopy imaging

机译:显微成像的时域混合有限差分菲涅耳建模

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摘要

Full-wave electromagnetic analysis by the finite-difference time-domain (FDTD) method is combined with the scalar diffraction method to obtain a numerical tool for optical lens imaging. The FDTD method is applied to the modeling of scattering phenomenon in the vicinity of a target. Afterward, obtained results are coupled with the Fresnel diffraction method to project an image through the lens onto the image plane. The FDTD algorithm is able to provide the solution of the electromagnetic analysis of the target with all its geometrical complexity. It is also relatively effective, since it allows the arbitrarily shaped geometry of the target to be analyzed in a specified spectrum range with only one simulation run. Such coupled FDTD-Fresnel modeling exploits the advantages of both methods, maintaining the required accuracy and speeding up the overall computation of the image.
机译:通过时域有限差分(FDTD)方法进行全波电磁分析与标量衍射方法相结合,以获得用于光学透镜成像的数值工具。 FDTD方法应用于目标附近散射现象的建模。然后,将获得的结果与菲涅耳衍射法结合,以将图像通过镜头投射到像面上。 FDTD算法能够提供目标的所有几何复杂性的电磁分析解决方案。这也是相对有效的,因为它允许仅通过一次模拟运行就可以在指定的光谱范围内分析目标的任意形状的几何形状。这种耦合的FDTD-Fresnel建模利用了这两种方法的优点,可保持所需的准确性并加快图像的整体计算速度。

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