{"title":"Shape and deformation measurements of rough surfaces by phase-shifting digital holography","authors":"I. Yamaguchi","doi":"10.4302/plp.v13i4.1127","DOIUrl":null,"url":null,"abstract":"In digital holography recording as reconstruction of holograms are performed digitally by modern photonic devices to increase of optical non-contacting measurements of various kinds of surfaces including both specular and rough surfaces. In this article we discusses these features of digital holography using phase shifting techniques that has much extended its capabilities. Full Text: PDF ReferencesG. Bruning, D.R. Herriott, J.E. Gallagher, D.P. Rosenfeld, A.D. White, D.J. Brangaccio, \"Digital Wavefront Measuring Interferometer for Testing Optical Surfaces and Lenses\", Appl. Opt. 13, 2693 (1974). CrossRef I. Yamaguchi, T. Zhang, \"Phase-shifting digital holography\", Opt. Lett. 22, 1268 (1997). CrossRef F. Zhang, I. Yamaguchi, L.P. Yaroslavsky, \"Algorithm for reconstruction of digital holograms with adjustable magnification\", Opt. Lett. 29, 1668 (2004). CrossRef I. Yamaguchi, \"Holography, speckle, and computers\", Optics and Lasers in Engineering 39, 411 (2003). CrossRef I. Yamaguchi, M. Yokota, \"Speckle noise suppression in measurement by phase-shifting digital holography\", Opt. Eng. 48 085602 (2009). CrossRef I. Yamaguchi, J. Kato, S. Ohta, \"Surface Shape Measurement by Phase-Shifting Digital Holography\", Opt. Rev. 8, 85 (2001). CrossRef I. Yamaguchi, J. Kato, H. Matsuzaki, \"Measurement of surface shape and deformation by phase-shifting image digital holography\", Opt. Eng. 42, 1267 (2003). CrossRef F. Zhang, J.D.R. Valera, I. Yamaguchi, M. Yokota, G. Mills, \"Vibration Analysis by Phase Shifting Digital Holography\", Opt. Rev. 11, 5 (2004). CrossRef","PeriodicalId":20055,"journal":{"name":"Photonics Letters of Poland","volume":" ","pages":""},"PeriodicalIF":0.5000,"publicationDate":"2021-12-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Photonics Letters of Poland","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.4302/plp.v13i4.1127","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"OPTICS","Score":null,"Total":0}
引用次数: 0
Abstract
In digital holography recording as reconstruction of holograms are performed digitally by modern photonic devices to increase of optical non-contacting measurements of various kinds of surfaces including both specular and rough surfaces. In this article we discusses these features of digital holography using phase shifting techniques that has much extended its capabilities. Full Text: PDF ReferencesG. Bruning, D.R. Herriott, J.E. Gallagher, D.P. Rosenfeld, A.D. White, D.J. Brangaccio, "Digital Wavefront Measuring Interferometer for Testing Optical Surfaces and Lenses", Appl. Opt. 13, 2693 (1974). CrossRef I. Yamaguchi, T. Zhang, "Phase-shifting digital holography", Opt. Lett. 22, 1268 (1997). CrossRef F. Zhang, I. Yamaguchi, L.P. Yaroslavsky, "Algorithm for reconstruction of digital holograms with adjustable magnification", Opt. Lett. 29, 1668 (2004). CrossRef I. Yamaguchi, "Holography, speckle, and computers", Optics and Lasers in Engineering 39, 411 (2003). CrossRef I. Yamaguchi, M. Yokota, "Speckle noise suppression in measurement by phase-shifting digital holography", Opt. Eng. 48 085602 (2009). CrossRef I. Yamaguchi, J. Kato, S. Ohta, "Surface Shape Measurement by Phase-Shifting Digital Holography", Opt. Rev. 8, 85 (2001). CrossRef I. Yamaguchi, J. Kato, H. Matsuzaki, "Measurement of surface shape and deformation by phase-shifting image digital holography", Opt. Eng. 42, 1267 (2003). CrossRef F. Zhang, J.D.R. Valera, I. Yamaguchi, M. Yokota, G. Mills, "Vibration Analysis by Phase Shifting Digital Holography", Opt. Rev. 11, 5 (2004). CrossRef
在数字全息术中,记录作为全息图的重建是由现代光子器件进行的,以增加对各种表面(包括镜面和粗糙表面)的光学非接触测量。在这篇文章中,我们讨论了这些特点的数字全息使用相移技术,有很大的扩展其能力。全文:PDFBruning, D.R. Herriott, J.E. Gallagher, D.P. Rosenfeld, A.D. White, D.J. Brangaccio,“用于光学表面和透镜测试的数字波前测量干涉仪”,中国科学院学报。选择13,2693(1974)。交叉参考:张涛,“相移数字全息”,光学学报22,1268(1997)。交叉参考:张福峰,山口一,雅罗夫斯基,“可调放大数字全息图的重建算法”,光学学报,29,1668(2004)。CrossRef . Yamaguchi,“全息、散斑与计算机”,光学与激光工程39,411(2003)。CrossRef . Yamaguchi, M. Yokota,“相移数字全息测量中的散斑噪声抑制”,光学工程,48(05)- 602(2009)。交叉ref . Yamaguchi, J. Kato, S. Ohta,“基于相移数字全息的表面形状测量”,光学学报,第8卷,85(2001)。交叉ref . Yamaguchi, J. Kato, H. Matsuzaki,“用相移图像数字全息法测量表面形状和变形”,光学工程42,1267(2003)。CrossRef . Zhang F., J.D.R. Valera, I. Yamaguchi, M. Yokota, G. Mills,“相移数字全息的振动分析”,光学学报,11,5(2004)。CrossRef