中国激光, 2014, 41 (6): 0609001, 网络出版: 2014-05-14   

强度传输方程和角谱迭代融合的相位检索算法

Phase Retrieval Algorithm Combining Transport of Intensity Equation and Angular Spectrum Iterative
作者单位
安徽大学计算智能与信号处理教育部重点实验室, 安徽 合肥 230039
摘要
相位检索技术将光学与计算相结合,从强度测量中恢复相位,包括强度传输方程法和角谱迭代法。但前者仅对近场相位的恢复有效,其基于相干照明的假设前提使得该方法不能直接应用于自然场景的相位检索中;而后者具有迭代不确定性、收敛速度慢等缺点。探讨了在相干照明情况下传统强度传输方程法和角谱迭代法相融合的相位检索算法,将该融合法进一步扩展,提出了适用于自然场景透镜模型的相位检索方法,即使用强度传输方程法计算像平面的相位,并将该相位值作为角谱迭代的初始值,根据光路的可逆性,迭代出物面的相位信息,分别给出了两种情况下的实验结果。
Abstract
Phase retrieval technology combines optics and calculations to recover phase from the intensity measurement, including transport of intensity equation and angular spectrum iterative. Unfortunately, the former is only effective for near-field phase retrieval, and it can not be directly applied to the phase retrieval of natural scenes, because this method is based on the assumption of coherent illumination. The latter has many shortcomings including iterative uncertainty, slow convergence and so on. Traditional transport of intensity equation combining with angular spectrum iterative is explored in the case of coherent illumination. The fusion method is further expanded and the phase retrieval method is proposed for natural scene lens model. The phase of the image plane is calculated using transport of intensity equation, and the value is used as the initial value of the angular spectrum iterative. The phase information in the object plane is acquired according to the reversibility of the optical path. The results of experiments are given in these two cases.
参考文献

[1] M Mir, B Bhaduri, R Wang, et al.. Quantitative phase imaging[J]. Progress in Optics, 2012, 57: 133-217.

[2] 沈川, 张成, 刘凯峰, 等. 基于像素结构空间光调制器的全息再现像问题研究[J]. 光学学报, 2012, 32(3): 0309001.

    Shen Chuan, Zhang Cheng, Liu Kaifeng, et al.. Research on issues about reconstructed holographic image based on a pixilated spatial light modulator[J]. Acta Optica Sinca, 2012, 32(3): 0309001.

[3] R W Gerchberg, W O Saxton. A practical algorithm for the determination of phase from image and diffraction plane pictures[J]. Optik, 1972, 35: 237-246.

[4] J R Fienup. Phase retrieval algorithms: a comparison[J]. Appl Opt, 1982, 21(15): 2758-2769.

[5] 马鑫雪, 王建立, 王斌. 相位恢复技术算法的探究[J]. 激光与红外, 2012, 42(2): 217-221.

    Ma Xinxue, Wang Jianli, Wang Bin. Study on phase retrieval algorithm[J]. Laser & Infrared, 2012, 42(2): 217-221.

[6] 黄利新, 姚新, 蔡冬梅, 等. 一种快速高精度的相位恢复迭代法[J]. 中国激光, 2010, 37(5): 1218-1221.

    Huang Lixin, Yao Xin, Cai Dongmei, et al.. A high accuracy and fast iterative algorithm for phase retrieval[J]. Chinese J Lasers, 2010, 37(5): 1218-1221.

[7] M R Teague. Deterministic phase retrieval: a Green′s function solution[J]. J Opt Soc Am, 1983, 73(11): 1434-1441.

[8] J Frank, S Altmeyer, G Wernicke. Non-interferometric, non-iterative phase retrieval by Green′s functions[J]. J Opt Soc Am A, 2010, 27(10): 2244-2251.

[9] 王潇, 毛珩, 赵达尊. 基于光强传播方程的相位恢复[J]. 光学学报, 2007, 27(12): 2117-2121.

    Wang Xiao, Mao Heng, Zhao Dazun. Phase retrieval based on intensity transport equation[J]. Acta Optica Sinca, 2007, 27(12): 2117-2121.

[10] T E Gureyev, A Roberts, K A Nugent. Phase retrieval with the transport of intensity equation: matrix solution with use of Zernike polynomials[J]. J Opt Soc Am A, 1995, 12(9): 1932-1942.

[11] Bindang Xue, Shiling Zheng. Phase retrieval using the transport of intensity equation solved by the FMG-CG method[J]. Optik, 2011, 122(23): 2101-2106.

[12] 程鸿, 章权兵, 韦穗, 等. 基于强度传输方程的相位检索[J]. 光子学报, 2011, 40(10): 1566-1570.

    Cheng Hong, Zhang Quanbin, Wei Sui, et al.. Phase retrieval based on transport-of-intenstiy equation[J]. Acta Photonica Sinica, 2011, 40(10): 1566-1570.

[13] T E Gureyev. Composite techniques for phase retrieval in the Fresnel region[J]. Optics Communications, 2003, 220(1): 49-58.

[14] K A Nugent. Coherent methods in the X-ray sciences[J]. Advances in Physics, 2010, 59(1): 1-99.

[15] K Ishizuka, B Allman. Phase measurement in electron microscopy using the transport of intensity equation[J]. Microscopy Today, 2005, 5: 22-24.

[16] L J Allen, M P Oxley. Phase retrieval from series of images obtained by defocus variation[J]. Opt Commun, 2001, 199(1): 65-75.

[17] A V Martina, F R Chenb, W K Hsiehb, et al.. Spatial incoherence in phase retrieval based on focus variation[J]. Ultramicroscopy, 2006, 106(10): 914-924.

[18] J Goodman. Introduction to Fourier Optics[M]. New York: McGraw-Hill Press, 1996.

程鸿, 沈川, 张成, 张芬, 韦穗. 强度传输方程和角谱迭代融合的相位检索算法[J]. 中国激光, 2014, 41(6): 0609001. Cheng Hong, Shen Chuan, Zhang Cheng, Zhang Fen, Wei Sui. Phase Retrieval Algorithm Combining Transport of Intensity Equation and Angular Spectrum Iterative[J]. Chinese Journal of Lasers, 2014, 41(6): 0609001.

本文已被 6 篇论文引用
被引统计数据来源于中国光学期刊网
引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!