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Modified scaling angular spectrum method for numerical simulation in long-distance propagation

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【作者】 陈晓义段亚轩项斌斌李铭达争尚

【Author】 Xiao-Yi Chen;Ya-Xuan Duan;Bin-Bin Xiang;Ming Li;Zheng-Shang Da;The Advanced Optical Instrument Research Department, Xi’an Institute of Optics and Precision Mechanics,Chinese Academy of Sciences;University of Chinese Academy of Sciences;Xinjiang Astronomical Observatory, Chinese Academy of Sciences;

【通讯作者】 段亚轩;

【机构】 The Advanced Optical Instrument Research Department, Xi’an Institute of Optics and Precision Mechanics,Chinese Academy of SciencesUniversity of Chinese Academy of SciencesXinjiang Astronomical Observatory, Chinese Academy of Sciences

【摘要】 The angular method(AS) cannot be used in long-distance propagation because it produces severe numerical errors due to the sampling problem in the transfer function. Two ways can solve this problem in AS for long-distance propagation.One is zero-padding to make sure that the calculation window is wide enough, but it leads to a huge calculation burden. The other is a method called band-limited angular spectrum(BLAS), in which the transfer function is truncated and results in that the calculation accuracy decreases as the propagation distance increases. In this paper, a new method called modified scaling angular spectrum(MSAS) to solve the problem for long-distance propagation is proposed. A scaling factor is introduced in MSAS so that the sampling interval of the input plane can be adjusted arbitrarily unlike AS whose sampling interval is restricted by the detector’s pixel size. The sampling interval of the input plane is larger than the detector’s pixel size so the size of calculation window suitable for long-distance field propagation in the input plane is smaller than the size of the calculation window required by the zero-padding. Therefore, the method reduces the calculation redundancy and improves the calculation speed. The results from simulations and experiments show that MSAS has a good signal-to-noise ratio(SNR), and the calculation accuracy of MSAS is better than BLAS.

【Abstract】 The angular method(AS) cannot be used in long-distance propagation because it produces severe numerical errors due to the sampling problem in the transfer function. Two ways can solve this problem in AS for long-distance propagation.One is zero-padding to make sure that the calculation window is wide enough, but it leads to a huge calculation burden. The other is a method called band-limited angular spectrum(BLAS), in which the transfer function is truncated and results in that the calculation accuracy decreases as the propagation distance increases. In this paper, a new method called modified scaling angular spectrum(MSAS) to solve the problem for long-distance propagation is proposed. A scaling factor is introduced in MSAS so that the sampling interval of the input plane can be adjusted arbitrarily unlike AS whose sampling interval is restricted by the detector’s pixel size. The sampling interval of the input plane is larger than the detector’s pixel size so the size of calculation window suitable for long-distance field propagation in the input plane is smaller than the size of the calculation window required by the zero-padding. Therefore, the method reduces the calculation redundancy and improves the calculation speed. The results from simulations and experiments show that MSAS has a good signal-to-noise ratio(SNR), and the calculation accuracy of MSAS is better than BLAS.

【基金】 Project supported by the National Natural Science Foundation of China (Grant No. 61705254);the Key Research and Development Program of Shaanxi Province of China (Grant No. 2020GY-114)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2021年03期
  • 【分类号】O439
  • 【被引频次】1
  • 【下载频次】17
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