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Based on the analysis of the recording and reconstructing of hologram and the point spread function of pre-magnification digital micro-holographic system (PMDMHS), the performances of the six common PMDMHSs are compared in imaging resolution, imaging quality and conveniences, for the first time to our knowledge. The results show that the digital image-plane holography (DIPH) has the highest imaging resolution and the best imaging quality; the resolution of DIPH is independent of the photosensitive surface size of the recording device; this system can completely record the information about the object transmitted through the micro-objective (MO); it is not needed to consider the size of illuminated region of object. Moreover, the reconstruction process of DIPH is very simple. DIPH is an optimized digital holographic imaging system. The DIPH with equal curvature of reference wavefront and object wavefront is very conducive to phase unwrapping and phase aberration compensation; therefore DIPH is more suitable for phase microscopy. The experimental results demonstrate the validation of the theoretical analysis.
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Keywords:
- digital micro-holographic microscopy /
- pre-magnification digital holography /
- image-plane digital holog- raphy /
- resolution
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[16] Wang H Y, Wang G J, Zhao J, Xie J J, Wang D Y 2008 Acta Photonica Sinica 37 729 (in Chinese) [王华英, 王广俊, 赵洁, 谢建军, 王大勇 2008 光子学报 37 729]
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[1] Eilenberger F, Minardi S, Pliakis D, Pertsch T 2012 Opt. Lett. 37 509
[2] Anand A, Chhaniwal V K, Javidi B 2010 J. Dis. Tech. 6 500
[3] Miccio L, Finizio A, Puglisi R 2011 Bio.Opt. Exp. 2 331
[4] Rajshekhar G, Gorthi S S, Rastogi P 2010 Opt. Exp. 18 18041
[5] Das B, Yelleswarapu C S, Rao D V G L N 2012 Appl. Opt. 51 1387
[6] Wang L, Zhao J L, Di J L, Jiang H Z 2011 Opt. Lett. 36 2710
[7] Wang Y X, Wang D Y, Zhao J, Yang Y S, Xiao X Q, Cui H Q 2011 Chi. Opt. Lett. 9 030901
[8] Ding S H, Li Q, Li Y D, Wang Q 2011 Opt. Lett. 36 1993
[9] Zhao J L, Jiang H Z, Di J L 2012 Biomedical Optics and 3D Imaging OSA DSu3C 1
[10] Tsang P W M, Cheung K W K, Poon T C 2012 Opt. Expre. 20 A5962
[11] Li J C, Fan Z B, Patrice T, Song Q H, Pascal P 2011 Acta. Phys. Sin. 60 034204 (in Chinese) [李俊昌, 樊则宾, Patrice T, 宋庆和, Pascal P 2011 60 034204]
[12] Hu H F, Wang X L, Li Z L, Zhang N, Zhai H C 2009 Acta. Phys. Sin. 58 7662 (in Chinese) [胡浩丰, 王晓雷, 李智磊, 张 楠, 翟宏琛 2009 58 7662]
[13] Hu H F, Wang X L, Gguo W G, Zhai H C, Wang P 2011 Acta. Phys. Sin. 60 017901 (in Chinese) [胡浩丰, 王晓雷, 郭文刚, 翟宏琛, 王 攀 2011 60 017901]
[14] Zhang Q S, Lv X Xu, Yu Q T, Liu G Y 2009 Chin. Phy. B 18 2764
[15] Wang H Y, Guo Z J, Zhang Z H, Liu F F 2012 J. Optoelectronics Laser 39 0209002 (in Chinese) [王华英, 郭中甲, 张志会, 刘飞飞 2012 中国激光 39 0209002]
[16] Wang H Y, Wang G J, Zhao J, Xie J J, Wang D Y 2008 Acta Photonica Sinica 37 729 (in Chinese) [王华英, 王广俊, 赵洁, 谢建军, 王大勇 2008 光子学报 37 729]
[17] Cui H K, Wang D Y, Wang Y X, Liu C G, Zhao J, Li Y 2011 Acta. Phys. Sin. 60 044201 (in Chinese) [崔华坤, 王大勇, 王云新, 刘长庚, 赵 洁, 李 艳 2011 60 044201]
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