• Chinese Optics Letters
  • Vol. 8, Issue 7, 653 (2010)
Lu Rong1、2, Wen Xiao1, Feng Pan1, Shuo Liu1, and Rui Li1
Author Affiliations
  • 1School of Instrumentation Science and Opto-Electronics Engineering, Beihang University, Beijing 100191, China
  • 2Department of Physics and Astronomy, University of California, Los Angeles, CA 90095-1547, USA
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    DOI: 10.3788/COL20100807.0653 Cite this Article Set citation alerts
    Lu Rong, Wen Xiao, Feng Pan, Shuo Liu, Rui Li. Speckle noise reduction in digital holography by use of multiple polarization holograms[J]. Chinese Optics Letters, 2010, 8(7): 653 Copy Citation Text show less
    References

    [1] J. W. Goodman and R. W. Lawrence, Appl. Phys. Lett. 11, 77 (1967).

    [2] J. W. Goodman, Speckle Phenomena in Optics: Theory and Applications (Roberts & Co., Englewood, 2006).

    [3] J. C. Dainty, Laser Speckle and Related Phenomena (2nd edn.) (Springer Verlag, Berlin, 1984).

    [4] T. Kreis, Handbook of Holographic Interferometry: Optical and Digital Methods (Wiley-VCH, Weinheim, 2005).

    [5] T.-C. Poon, T. Kim, G. Indebetouw, B. W. Schilling, M. H. Wu, K. Shinoda, and Y. Suzuki, Opt. Lett. 25, 215 (2000).

    [6] H. Zheng, Y. Yu, T. Wang, and L. Dai, Chin. Opt. Lett. 7, 1151 (2009).

    [7] B. Javidi, P. Ferraro, S.-H. Hong, S. De Nicola, A. Finizio, D. Alfieri, and G. Pierattini, Opt. Lett. 30, 144 (2005).

    [8] T. Kreis and K. Schl uter, Opt. Eng. 46, 055803 (2007).

    [9] V. Kebbel, J. M uller, and W. J uptner, Proc. SPIE 4778, 188 (2002).

    [10] T. Nomura, M. Okamura, E. Nitanai, and T. Numata, Appl. Opt. 47, D38 (2008).

    [11] C. Quan, X. Kang, and C. J. Tay, Opt. Eng. 46, 115801 (2007).

    [12] X. Kang, Chin. Opt. Lett. 6, 100 (2008).

    [13] A. Papoulis and S. U. Pillai, Probability, Random Variables, and Stochastic Processes (4th edn.) (McGraw-Hill, New York, 2002).

    CLP Journals

    [1] Junmin Leng, Xinzhu Sang, Binbin Yan. Speckle noise reduction in digital holography with spatial light modulator and nonlocal means algorithm[J]. Chinese Optics Letters, 2014, 12(4): 040301

    [2] Pan Feng, Xiao Wen. Speckle Noise Reduction in Digital Holography by Slightly Shifting Object[J]. Chinese Journal of Lasers, 2011, 38(s1): 109001

    [3] Juanjuan Zheng, Baoli Yao, Romano A., Tong Ye, Peng Gao, Junwei Min, Rongli Guo. Dual-channel phase-shifting interferometry for microscopy with second wavelength assistance[J]. Chinese Optics Letters, 2012, 10(1): 010901

    [4] Wen Xiao, Jing Zhang, Lu Rong, Feng Pan, Shuo Liu, Fanjing Wang, Aga He. Improvement of speckle noise suppression in digital holography by rotating linear polarization state[J]. Chinese Optics Letters, 2011, 9(6): 060901

    [5] Gaoming Li, Shou Liu, Yishen Qiu, Hui Li, Yan Huang, Lijuan Wang. Analysis of speckle reduction based on theory of optical eigenfunction[J]. Chinese Optics Letters, 2011, 9(3): 031203

    [6] Xin Gao, Xinzhu Sang, Xunbo Yu, Wanlu Zhang, Binbin Yan, Chongxiu Yu. 360° light field 3D display system based on a triplet lenses array and holographic functional screen[J]. Chinese Optics Letters, 2017, 15(12): 121201

    Data from CrossRef

    [1] H. Liu, J. Bailleul, B. Simon, M. Debailleul, B. Colicchio, O. Haeberlé. Tomographic diffractive microscopy and multiview profilometry with flexible aberration correction. Applied Optics, 53, 748(2014).

    [2] Wenyang Cai, Li Chen, Weitao Lin, Jiaqi Xiao, Jinyang Li, Yihua Hu, Kunhua Wen. Redundant speckle elimination in digital holography with the Gauss window function. Optik, 256, 168682(2022).

    [3] Feng Pan, Lizhi Yang, Wen Xiao. Coherent noise reduction in digital holographic microscopy by averaging multiple holograms recorded with a multimode laser. Optics Express, 25, 21815(2017).

    [4] LeiPing Che, Wen Xiao, Feng Pan, Bin Dong, Zheng Zhong. Reduction of speckle noise in digital holography by combination of averaging several reconstructed images and modified nonlocal means filtering. Optics Communications, 426, 9(2018).

    [5] Vittorio Bianco, Melania Paturzo, Andrea Finizio, Donatella Balduzzi, Roberto Puglisi, Andrea Galli, Pietro Ferraro. Clear coherent imaging in turbid microfluidics by multiple holographic acquisitions. Optics Letters, 37, 4212(2012).

    [6] Vittorio Bianco, Mattia Delli Priscoli, Daniele Pirone, Gennaro Zanfardino, Pasquale Memmolo, Francesco Bardozzo, Lisa Miccio, Gioele Ciaparrone, Pietro Ferraro, Roberto Tagliaferri. Deep Learning-Based, Misalignment Resilient, Real-Time Fourier Ptychographic Microscopy Reconstruction of Biological Tissue Slides. IEEE Journal of Selected Topics in Quantum Electronics, 28, 1(2022).

    [7] Vittorio Bianco, Pasquale Memmolo, Marco Leo, Silvio Montresor, Cosimo Distante, Melania Paturzo, Pascal Picart, Bahram Javidi, Pietro Ferraro. Strategies for reducing speckle noise in digital holography. Light: Science & Applications, 7, 48(2018).

    [8] Hongqiang Yu, Shuhai Jia, Yuba Liu, Jun Dong. Phase coherent noise reduction in digital holographic microscopy based on adaptive total variation. Optics and Lasers in Engineering, 134, 106204(2020).

    [9] Wooyoung Jeong, Kyungchan Son, Janghyun Cho, Hyunseok Yang, No-Cheol Park. Suppression algorithm of speckle noise for parallel phase-shift digital holography. Optics & Laser Technology, 112, 93(2019).

    [10] Miguel León-Rodríguez, Ramón Rodríguez-Vera, Juan A. Rayas, Sergio Calixto. High topographical accuracy by optical shot noise reduction in digital holographic microscopy. Journal of the Optical Society of America A, 29, 498(2012).

    [11] Wooyoung Jeong, Kyungchan Son, Hyunseok Yang. Image Reconstruction Algorithm for Speckle Noise Reduction of 2-Step Parallel Phase-Shift Digital Holography. Imaging and Applied Optics 2017 (3D, AIO, COSI, IS, MATH, pcAOP), MTu2C.3(2017).

    [12] Su-Juan Liu, Di Wang, Qiong-Hua Wang. Speckle noise suppression method in holographic display using time multiplexing technique. Optics Communications, 436, 253(2019).

    [13] Manoj Kumar, Yassine Tounsi, Karmjit Kaur, Abdelkrim Nassim, Fernando Mandoza-Santoyo, Osamu Matoba. Speckle denoising techniques in imaging systems. Journal of Optics, 22, 063001(2020).

    [14] Hideki Funamizu, Jun Uozumi, Yoshihisa Aizu. Enhancement of spatial resolution in digital holographic microscopy using the spatial correlation properties of speckle patterns. OSA Continuum, 2, 1822(2019).

    [15] John Restrepo, Nelson Correa-Rojas, Jorge Herrera-Ramirez. Speckle Noise Reduction in Digital Holography Using a DMD and Multi-Hologram Resampling. Applied Sciences, 10, 8277(2020).

    [16] Ji Wu, Ju Tang, Jiawei Zhang, Jianglei Di. Coherent noise suppression in digital holographic microscopy based on label-free deep learning. Frontiers in Physics, 10, 880403(2022).

    [17] Chuan Shen, Yifei Qi, Jiali Sun, Shiqi Lv, Sui Wei. Optimized iterative method for generating phase-only Fourier hologram based on quadratic phase. Optics Communications, 500, 127313(2021).

    [18] P W M Tsang, T-C Poon. Generation of integrated binary Fresnel hologram for multiple images. Journal of Optics, 16, 105403(2014).

    [19] Su-juan Liu, Di Wang, Qiong-Hua Wang. P-92: A Holographic Display System with Suppressed Speckle Noise. SID Symposium Digest of Technical Papers, 48, 1596(2017).

    [20] Qiang Huang, Xiyu Duan, Youwu He, Yishen Qiu, Haijun Li, Gaoming Li. Optical lens designed for speckle measurement based on human eyes resolution cells on speckle pattern induced by laser projector. Optics & Laser Technology, 112, 229(2019).

    [21] Carlos Buitrago-Duque, Raul Casta?eda, Jorge Garcia-Sucerquia. Pointwise phasor tuning for single-shot speckle noise reduction in phase wave fields. Optics and Lasers in Engineering, 137, 106365(2021).

    [22] Joseph Rosen, A. Vijayakumar, Manoj Kumar, Mani Ratnam Rai, Roy Kelner, Yuval Kashter, Angika Bulbul, Saswata Mukherjee. Recent advances in self-interference incoherent digital holography. Advances in Optics and Photonics, 11, 1(2019).

    [23] Yu. Kotsiuba, V. M. Fitio, H. Petrovska, Ya. V. Bobitski. Nanomaterials and Nanocomposites, Nanostructure Surfaces, and Their Applications, 246, 179(2021).

    [24] Silvio Montresor, Pascal Picart. Quantitative appraisal for noise reduction in digital holographic phase imaging. Optics Express, 24, 14322(2016).

    [25] Gülhan USTABA? KAYA, Zehra SARA?. Usage of segmentation for noise elimination in reconstructed images in digital holographic interferometry. TURKISH JOURNAL OF ELECTRICAL ENGINEERING & COMPUTER SCIENCES, 26, 234(2018).

    [26] Jani M?kinen, Erdem Sahin, Atanas Gotchev. Speckle reduction method for image-based coherent stereogram generation. Optics Express, 26, 5381(2018).

    [27] Amitai Uzan, Yair Rivenson, Adrian Stern. Speckle denoising in digital holography by nonlocal means filtering. Applied Optics, 52, A195(2013).

    [28] D.G. Abdelsalam, Daesuk Kim. Non-coherent noise reduction in digital holography based on root mean square technique. Optik, 123, 2131(2012).

    [29] D. G. Abdelsalam, Daesuk Kim. Coherent noise suppression in digital holography based on flat fielding with apodized apertures. Optics Express, 19, 17951(2011).

    [30] Wei Lu, Yue Shi, Jinghua Yue, Ming Zheng, Mingqing Wang, Jian Wu. Complex-valued speckle effect and its suppression for high quality of phase unwrapping reconstruction in coherent digital holographic microscopy. Optics Communications, 472, 125837(2020).

    [31] Chao Lin, Yanli Han, Shuli Lou, Zengyan Li. High spectral and spatial resolved encryption and decryption of 3D color object based on holographic imaging spectroscopy. Optics and Lasers in Engineering, 145, 106669(2021).

    [32] Vittorio Bianco, Pasquale Memmolo, Melania Paturzo, Pietro Ferraro. On-speckle suppression in IR digital holography. Optics Letters, 41, 5226(2016).

    [33] Junmin Leng, Jinhe Zhou, Xiaoping Lang, Xiaoying Li. Two-stage method to suppress speckle noise in digital holography. Optical Review, 22, 844(2015).

    [34] Yunxin Wang, Puhui Meng, Dayong Wang, Lu Rong, Spozmai Panezai. Speckle noise suppression in digital holography by angular diversity with phase-only spatial light modulator. Optics Express, 21, 19568(2013).

    [35] V. Bianco, M. Paturzo, P. Memmolo, A. Finizio, P. Ferraro, B. Javidi. Random resampling masks: a non-Bayesian one-shot strategy for noise reduction in digital holography. Optics Letters, 38, 619(2013).

    [36] Shaodong Feng, Jigang Wu. Differential holographic reconstruction for lensless in-line holographic microscope with ultra-broadband light source illumination. Optics Communications, 430, 9(2019).

    [37] Tomoyoshi Shimobaba, Takashi Kakue, Nobuyuki Masuda, Tomoyoshi Ito. Numerical investigation of zoomable holographic projection without a zoom lens. Journal of the Society for Information Display, 20, 533(2012).

    [38] Ma Jun, Yuan Cao-Jin, Feng Shao-Tong, Nie Shou-Ping. Full-field detection of polarization state based on multiplexing digital holography. Acta Physica Sinica, 62, 224204(2013).

    [39] V Yu Zaitsev, L A Matveev, A L Matveyev, G V Gelikonov, V M Gelikonov. A model for simulating speckle-pattern evolution based on close to reality procedures used in spectral-domain OCT. Laser Physics Letters, 11, 105601(2014).

    [40] Y. M. Kotsiuba, V. M. Fitio, H. A. Petrovska, Y. V. Bobitski. Improving the Quality of the Phase Maps by Chebyshev Polynomials. 2021 IEEE 12th International Conference on Electronics and Information Technologies (ELIT), 212(2021).

    [41] Hideki Funamizu, Shohei Shimoma, Tomonori Yuasa, Yoshihisa Aizu. Effects of spatiotemporal averaging processes on the estimation of spectral reflectance in color digital holography using speckle illuminations. Applied Optics, 53, 7072(2014).

    [42] Jorge Herrera-Ramirez, Diego Andrés Hincapie-Zuluaga, Jorge Garcia-Sucerquia. Speckle noise reduction in digital holography by slightly rotating the object. Optical Engineering, 55, 121714(2016).

    [43] Jun Dong, Shuhai Jia, Hongqiang Yu. Hybrid method for speckle noise reduction in digital holography. Journal of the Optical Society of America A, 36, D14(2019).

    [44] Wang Da-Yong, Wang Yun-Xin, Guo Sha, Rong Lu, Zhang Yi-Zhuo. Research on speckle denoising by lensless Fourier transform holographic imaging with angular diversity. Acta Physica Sinica, 63, 154205(2014).

    [45] Feng Pan, Wen Xiao, Shuo Liu, Lu Rong. Application of three-dimensional spatial correlation properties of coherent noise in phase noise suppression for digital holographic microscopy. Optics & Laser Technology, 51, 67(2013).

    [46] V. Bianco, M. Paturzo, P. Ferraro. Spatio-temporal scanning modality for synthesizing interferograms and digital holograms. Optics Express, 22, 22328(2014).

    [47] Yun Liu, Zhao Wang, Junhui Huang, Jianmin Gao, Jiansu Li, Yang Zhang, Xumeng Li. Coherent noise reduction of reconstruction of digital holographic microscopy using a laterally shifting hologram aperture. Optical Engineering, 55, 121725(2016).

    [48] Weitao Lin, Li Chen, Yonghao Chen, Wenyang Cai, Yihua Hu, Kunhua Wen. Single-shot speckle reduction by elimination of redundant speckle patterns in digital holography. Applied Optics, 59, 5066(2020).

    [49] Vittorio Bianco, Pasquale Memmolo, Melania Paturzo, Andrea Finizio, Bahram Javidi, Pietro Ferraro. Quasi noise-free digital holography. Light: Science & Applications, 5, e16142(2016).

    [50] Ramesh Giri, Matthew J. Berg. Backscatter multiple wavelength digital holography for color micro-particle imaging. Applied Optics, 61, B83(2022).

    [51] Silvio Montrésor, Pasquale Memmolo, Vittorio Bianco, Pietro Ferraro, Pascal Picart. Comparative study of multi-look processing for phase map de-noising in digital Fresnel holographic interferometry. Journal of the Optical Society of America A, 36, A59(2019).

    [52] M. Leo, C. Distante, M. Paturzo, P. Memmolo, M. Locatelli, E. Pugliese, R. Meucci, P. Ferraro. Automatic Digital Hologram Denoising by Spatiotemporal Analysis of Pixel-Wise Statistics. Journal of Display Technology, 9, 904(2013).

    [53] He Ma, Juan Liu, Minqiang Yang, Xin Li, Gaolei Xue, Yongtian Wang. Influence of limited random-phase of objects on the image quality of 3D holographic display. Optics Communications, 385, 153(2017).

    [54] Vittorio Bianco, Biagio Mandracchia, Jaromr Bhal, Dario Barone, Pasquale Memmolo, Pietro Ferraro. Miscalibration-Tolerant Fourier Ptychography. IEEE Journal of Selected Topics in Quantum Electronics, 27, 1(2021).

    [55] Carlos Buitrago-Duque, Jorge Garcia-Sucerquia. Physical pupil manipulation for speckle reduction in digital holographic microscopy. Heliyon, 7, e06098(2021).

    [56] Feng Pan, Wen Xiao, Shuo Liu, FanJing Wang, Lu Rong, Rui Li. Coherent noise reduction in digital holographic phase contrast microscopy by slightly shifting object. Optics Express, 19, 3862(2011).

    [57] Clear Microfluidics Imaging Through Flowing Blood by Digital Holography. IEEE Journal of Selected Topics in Quantum Electronics, 20, 89(2014).

    [58] Feng Pan, Wen Xiao, Shuo Liu, Lu Rong. Coherent noise reduction in digital holographic microscopy by laterally shifting camera. Optics Communications, 292, 68(2013).

    [59] Yun Liu, Zhao Wang, Junhui Huang. Recent Progress on Aberration Compensation and Coherent Noise Suppression in Digital Holography. Applied Sciences, 8, 444(2018).

    [60] Miguel León-Rodríguez, Ramón Rodríguez-Vera, Juan A. Rayas, Sergio Calixto. Imaging Methods for Novel Materials and Challenging Applications, Volume 3, 29(2013).

    [61] Lu Rong, Dayong Wang, Yuhong Wan, Yunxin Wang. Suppression of Speckle Noise in Digital Holography via Rotating Polarization State. Digital Holography and Three-Dimensional Imaging, DTh3A.4(2013).

    [62] Ning Liu, Weiliang Li, Dongxue Zhao. Enhancement of low-quality reconstructed digital hologram images based on frequency extrapolation of large objects under the diffraction limit. Optical Review, 23, 448(2016).

    [63] Yun Liu, Peihua Bu, Mingxing Jiao, Junhong Xing, Ke Kou, Tianhong Lian, Xian Wang, Yumeng Liu. Dynamic Speckle Illumination Digital Holographic Microscopy by Doubly Scattered System. Photonics, 8, 276(2021).

    [64] Pascal Picart, Silvio Montresor. Optical Holography-Materials, Theory and Applications, 83(2020).

    [65] Pu Hui Meng, Da Yong Wang, Yun Xin Wang. Short-Coherence Light Source Digital Holography Imaging Using Light-Emitting Diodes. Advanced Materials Research, 718-720, 2281(2013).

    [66] Francesco Merola, Pasquale Memmolo, Lisa Miccio, Vittorio Bianco, Melania Paturzo, Pietro Ferraro. Diagnostic Tools for Lab-on-Chip Applications Based on Coherent Imaging Microscopy. Proceedings of the IEEE, 103, 192(2015).

    [67] Yutaka Mori, Takahiko Fukuoka, Takanori Nomura. Speckle reduction in holographic projection by random pixel separation with time multiplexing. Applied Optics, 53, 8182(2014).

    [68] Weitao Lin, Li Chen, Wenyang Cai, Yihua Hu, Kunhua Wen. Speckle reduction in digital holography with low-dimensional reconstruction. Applied Optics, 60, 1470(2021).

    [69] Feng Yang, Lei Zhu, Kai Wei, Yudong Zhang, Liangcai Cao. Speckle-reduced reconstruction of a single-shot hologram by multiple tip–tilt modulations. Applied Optics, 60, 5220(2021).

    [70] Yunxin Wang, Dayong Wang, Lu Rong, Yuhong Wan. Suppression of Speckle Noise with Spatial Light Modulator in Digital Holography. Imaging and Applied Optics 2014, DTh4B.7(2014).

    [71] Vicente Micó, Carlos Ferreira, Javier García. Surpassing digital holography limits by lensless object scanning holography. Optics Express, 20, 9382(2012).

    [72] Li Fang, Wang Ming-Qing, Zheng Ming, Lu Wei, Yu Qing-Nan, Jia Yan, Wu Jian. Numerical reference plane algorithm for effectively solving tilt distortion of a phase image in digital off-axis holography. Acta Physica Sinica, 67, 094202(2018).

    [73] Robin Schubert, Angelika Vollmer, Steffi Ketelhut, Bj?rn Kemper. Enhanced quantitative phase imaging in self-interference digital holographic microscopy using an electrically focus tunable lens. Biomedical Optics Express, 5, 4213(2014).

    [74] Spozmai Panezai, Jie Zhao, Yunxin Wang, Dayong Wang, Lu Rong. Speckle suppression in off-axis lensless Fourier transform digital holography. Optics Communications, 397, 100(2017).

    [75] Ning Liu, Chao Yang, Haijie Cao. Noise suppression of the reconstruction of infrared digital holography based on pyramid-based bilateral filter. Infrared Physics & Technology, 85, 352(2017).

    [76] Diego Hincapie, Jorge Herrera-Ramírez, Jorge Garcia-Sucerquia. Single-shot speckle reduction in numerical reconstruction of digitally recorded holograms. Optics Letters, 40, 1623(2015).

    [77] Pasquale Memmolo, Vittorio Bianco, Melania Paturzo, Bahram Javidi, Paolo A. Netti, Pietro Ferraro. Encoding multiple holograms for speckle-noise reduction in optical display. Optics Express, 22, 25768(2014).

    [78] Junmin Leng, Honglian Li, Fubing Li. Despeckling by sparse sampling on Bernoulli process in single-shot digital holography. Multimedia Tools and Applications, 81, 9741(2022).

    [79] Yumin Wu, Haobo Cheng, Yongfu Wen, Xin Chen, Yingwei Wang. Coherent noise reduction of phase images in digital holographic microscopy based on the adaptive anisotropic diffusion. Applied Optics, 57, 5364(2018).

    [80] Yutaka Mori, Takanori Nomura. Speckle Reduction in Hologram Generation Based on Spherical Waves Synthesis Using Low-Coherence Digital Holography. Journal of Display Technology, 11, 867(2015).

    Lu Rong, Wen Xiao, Feng Pan, Shuo Liu, Rui Li. Speckle noise reduction in digital holography by use of multiple polarization holograms[J]. Chinese Optics Letters, 2010, 8(7): 653
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