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Original Articles

Electronic speckle pattern interferometry based on spatial information using only two sheets of speckle patterns

Pages 297-306 | Received 19 Sep 2013, Accepted 18 Dec 2013, Published online: 21 Feb 2014

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

Chenjia Gao, Zhan Gao, Yuhao Niu, Xu Wang, Jieming Zhao & Lin Deng. (2021) Velocity measurement of MEMS with temporal heterodyne microscopic speckle interferometry. Journal of Modern Optics 68:9, pages 489-495.
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Articles from other publishers (22)

Yasuhiko Arai. (2022) Possibility of Biological Observations Using the Speckle Interferometry-Based Super-Resolution Technology. Micro 2:4, pages 620-631.
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Jun Long, Hao Yan, Kaiping Li, Yuemeng Zhang, Shuyuan Pan & Ping Cai. (2022) Autofocusing by phase difference in reflective digital holography. Applied Optics 61:9, pages 2284.
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Yasuhiko Arai. (2021) Shape Measurement Method of Two-Dimensional Micro-Structures beyond the Diffraction Limit Based on Speckle Interferometry. Photonics 8:10, pages 420.
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Yasuhiko Arai. (2021) Microshape Measurement Method Using Speckle Interferometry Based on Phase Analysis. Photonics 8:4, pages 112.
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Yasuhiko Arai. (2020) Precise wide-range three-dimensional shape measurement method to measure superfine structures based on speckle interferometry. Optical Engineering 59:01, pages 1.
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Yasuhiko Arai. (2019) Electromagnetic analysis of three-dimensional shape measurement method based on speckle interferometry for fine structure by detecting phase distribution. Electromagnetic analysis of three-dimensional shape measurement method based on speckle interferometry for fine structure by detecting phase distribution.
Yasuhiko Arai. (2019) Three-dimensional shape measurement of fine structure by detecting phase distribution of only zeroth order diffraction beam based on speckle interferometry. Three-dimensional shape measurement of fine structure by detecting phase distribution of only zeroth order diffraction beam based on speckle interferometry.
Yasuhiko Arai. (2019) Pre-treatment for preventing degradation of measurement accuracy from speckle noise in speckle interferometry. Measurement 136, pages 36-41.
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Yasuhiko Arai. 2019. Progress in Optomechatronic Technologies. Progress in Optomechatronic Technologies 1 10 .
Yasuhiko Arai. (2018) Three-dimensional shape measurement beyond the diffraction limit of lens using speckle interferometry. Three-dimensional shape measurement beyond the diffraction limit of lens using speckle interferometry.
Yasuhiko Arai. (2017) Expansion of measurement area of three-dimensional deformation measurement speckle interferometry with same sensitivities in three directions under consideration of measurement sensitivity. Expansion of measurement area of three-dimensional deformation measurement speckle interferometry with same sensitivities in three directions under consideration of measurement sensitivity.
Y. Arai. Pre-treatment for preventing degradation of measurement accuracy by speckle noise in speckle interferometry. Pre-treatment for preventing degradation of measurement accuracy by speckle noise in speckle interferometry.
Yasuhiko Arai. (2016) Influence of error sources in speckle interferometry using only two speckle patterns. Optical Engineering 55:12, pages 124101.
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Yasuhiko Arai. (2016) Simultaneous in-plane and out-of-plane deformation measurement by speckle multi-recording method. Measurement 91, pages 582-589.
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Y. Arai. Two dimensional deformation vector analysis using speckle interferometry with same sensitivity in three directions. Two dimensional deformation vector analysis using speckle interferometry with same sensitivity in three directions.
Yasuhiko ARAI. (2016) Possibility of Out-of-plane and In-plane Deformation Measurement of Plate Buckling by Using High Resolution Speckle Interferometry. Journal of the Japan Society for Precision Engineering 82:10, pages 888-893.
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Y. Arai. Optimum beam ratio of speckle deformation interferometry using only two speckle patterns. Optimum beam ratio of speckle deformation interferometry using only two speckle patterns.
Y. Arai & S. Yokozeki. Influence of error sources in speckle interferometry using only two speckle patterns. Influence of error sources in speckle interferometry using only two speckle patterns.
Y. Arai. Measuring accuracy of in-plane and out-of-plane deformation simultaneous measurement of speckle interferometry using multi-recording method. Measuring accuracy of in-plane and out-of-plane deformation simultaneous measurement of speckle interferometry using multi-recording method.
Yasuhiko Arai. (2015) Development of in-plane and out-of-plane deformations simultaneous measurement method for the analysis of buckling. Optical Engineering 54:2, pages 024102.
Crossref
Yasuhiko Arai. (2014) Simultaneous In-Plane and Out-of-Plane Speckle Deformation Measurement by Multi-recording Method on One Camera. Simultaneous In-Plane and Out-of-Plane Speckle Deformation Measurement by Multi-recording Method on One Camera.
Yasuhiko Arai. Development of in-plane and out-of-plane deformation simultaneous measurement method for the analysis of buckling. Development of in-plane and out-of-plane deformation simultaneous measurement method for the analysis of buckling.

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