An optical-digital method of noise suppression in digital holography

被引:6
|
作者
Cheremkhin, Pavel A. [1 ]
Evtikhiev, Nikolay N. [1 ]
Kozlov, Alexander, V [1 ]
Krasnov, Vitaly V. [1 ]
Rodin, Vladislav G. [1 ]
Starikov, Rostislav S. [1 ]
机构
[1] Natl Res Nucl Univ MEPhI, Moscow Engn Phys Inst, Kashirskoe Shosse 31, Moscow 31, Russia
基金
俄罗斯科学基金会;
关键词
digital holography; speckle noise; despeckling; optical image processing; 3D filtering; digital image processing; SPECKLE-NOISE; MULTIPLE HOLOGRAMS; QUANTITATIVE PHASE; SHOT-NOISE; ZERO-ORDER; REDUCTION; MICROSCOPY; QUALITY; RECONSTRUCTION; QUANTIZATION;
D O I
10.1088/2040-8986/ac90d3
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Digital holography is widely used for the fast and accurate reconstruction of objects and three-dimensional (3D)-scene characteristics, such as intensity, depth locations, density, temperature, refractive index, etc. There are various types of noise in digital holography, including speckle noise, zero order and twin image, camera shot noise, and fixed-pattern noise. Therefore, additional hologram processing is required to obtain a high-quality reconstructed image. This paper proposes an optical-digital method of noise suppression in digital holography. First, a set of uncorrelated holograms is registered. The reconstructed images are treated as a 3D array, to which a 3D filter is then applied. A 3D median filter is used in this study; however, other 3D filters based on weighted averages can also be utilized. The proposed method is verified using computer-generated and optically registered digital Fresnel holograms. Even with a small number of images, the method significantly improves the quality: the normalized standard deviation was decreased by up to 3-10 times and the speckle contrast was reduced by more than six times. Registration of only ten holograms is sufficient to obtain a quality close to the maximum. The flexibility of the proposed method allows the ratio of the reconstruction quality to be varied according to the processing time.
引用
收藏
页数:15
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