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Nonuniform fast Fourier transform method for numerical diffraction simulation on tilted planes

机译:倾斜平面数值衍射模拟的非均匀快速傅里叶变换方法

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摘要

The method, based on the rotation of the angular spectrum in the frequency domain, is generally used for the diffraction simulation between the tilted planes. Due to the rotation of the angular spectrum, the interval between the sampling points in the Fourier domain is not even. For the conventional fast Fourier transform (FFT)-based methods, a spectrum interpolation is needed to get the approximate sampling value on the equidistant sampling points. However, due to the numerical error caused by the spectrum interpolation, the calculation accuracy degrades very quickly as the rotation angle increases. Here, the diffraction propagation between the tilted planes is transformed into a problem about the discrete Fourier transform on the uneven sampling points, which can be evaluated effectively and precisely through the nonuniform fast Fourier transform method (NUFFT). The most important advantage of this method is that the conventional spectrum interpolation is avoided and the high calculation accuracy can be guaranteed for different rotation angles, even when the rotation angle is close to pi/2. Also, its calculation efficiency is comparable with that of the conventional FFT-based methods. Numerical examples as well as a discussion about the calculation accuracy and the sampling method are presented. (C) 2016 Optical Society of America
机译:该方法基于频域中角谱的旋转,通常用于倾斜平面之间的衍射模拟。由于角度频谱的旋转,傅立叶域中采样点之间的间隔不均匀。对于基于常规快速傅立叶变换(FFT)的方法,需要进行频谱插值,以在等距采样点上获得近似采样值。但是,由于频谱内插引起的数值误差,随着旋转角度的增加,计算精度会很快下降。在这里,倾斜平面之间的衍射传播转化为关于不均匀采样点上的离散傅立叶变换的问题,可以通过非均匀快速傅立叶变换方法(NUFFT)对其进行有效而精确的评估。该方法最重要的优点是,即使旋转角度接近pi / 2,也可以避免传统的频谱插值,并且对于不同的旋转角度也可以确保较高的计算精度。而且,其计算效率与传统的基于FFT的方法相当。给出了数值示例,并讨论了计算精度和采样方法。 (C)2016美国眼镜学会

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