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Analysis of near field characteristics of a diffractive optical laser beam profile shaper using a high accuracy finite difference time domain method

机译:使用高精度有限差分时间域法测定衍射光激光激光激光束轮廓剖面近场特性的分析

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The finite-difference time-domain (FDTD) method as realized in the Yee algorithm is very useful for solving the analytically intractable diffraction problems that arise in the design of diffractive optical elements (DOE). The error, ε, of the Yee algorithm is rather large. We introduce a new high accuracy version of the Yee algorithm based on nonstandard finite differences. We have verified its performance by comparing with known analytical solutions. We have used this algorithm to study the near field (0-10 wavelengths) diffraction patterns of three binary phase gratings. Grating (1) has a constant period, while grating (2) has a variable one. Grating (3) is generated by interlacing grating (1) with (2). The period of grating (1) is on the order of a wavelength. Some of these computed fields display interesting and possibly useful Fourier spectra.
机译:在YEE算法中实现的有限差分时间域(FDTD)方法对于求解衍射光学元件(DOE)设计中出现的分析性难治性衍射问题非常有用。 yee算法的错误,ε,相当大。基于非标准有限差异,我们介绍了eee算法的新型高精度版本。通过与已知的分析解决方案进行比较,我们已经验证了其性能。我们使用该算法研究三个二进制相位光栅的近场(0-10波长)衍射图案。光栅(1)具有恒定的时段,而光栅(2)具有变量。通过将光栅(1)与(2)相互间隔(1)来产生光栅(3)。光栅(1)的时期是波长的顺序。其中一些计算的字段显示有趣且可能有用的傅里叶谱。

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