Two-wavelength contouring by iterative phase retrieval using volume speckle field

G. Pedrini, P. Fröning, H.J. Tiziani, M.E. Gusev, Pulsed digital holography for high-speed contouring that uses a two-wavelength method. Appl. Opt. 38, 3460 (1999)

Article  ADS  Google Scholar 

G.M. Brown, Overview of three-dimensional shape measurement using optical methods. Opt. Eng. 39, 10 (2000)

Article  ADS  Google Scholar 

G. Dai, F. Pohlenz, M. Xu, L. Koenders, H.-U. Danzebrink, G. Wilkening, Accurate and traceable measurement of nano- and microstructures. Meas. Sci. Technol. 17, 545–552 (2006)

Article  ADS  Google Scholar 

Y. Chugui, A. Verkhoglyad, A. Poleshchuk, V. Korolkov, E. Sysoev, P. Zavyalov, 3D optical measuring systems and laser technologies for scientific and industrial applications. Meas. Sci. Rev. 13, 322–328 (2013)

Article  Google Scholar 

K.K. Pant, D.R. Burada, M. Bichra, M.P. Singh, A. Ghosh, G.S. Khan, S. Sinzinger, C. Shakher, Subaperture stitching for measurement of freeform wavefront. Appl. Opt. 54, 10022 (2015)

Article  ADS  Google Scholar 

N. El-Hayek, H. Nouira, N. Anwer, M. Damak, O. Gibaru, Reconstruction of freeform surfaces for metrology. J. Phys. Conf. Ser. 483, 012003 (2014)

Article  Google Scholar 

S. DeFisher, M. Bechtold, D. Mohring. A non-contact surface measurement system for freeform and conformal optics, in Window and Dome Technologies and Materials XII (Vol. 8016, pp. 309–314). SPIE (2011)

X. Ma, J. Wang, B. Wang, X. Liu, Measurement of the aspherical optical surfaces with the improved phase retrieval. Micromachines 13, 549 (2022)

Article  Google Scholar 

J.C. Wyant, B.F. Oreb, P. Hariharan, Testing aspherics using two-wavelength holography: use of digital electronic techniques. Appl. Opt. 23, 4020 (1984)

Article  ADS  Google Scholar 

Q. Meng, W. Wang, H. Ma, J. Dong, Easy-aligned off-axis three-mirror system with wide field of view using freeform surface based on integration of primary and tertiary mirror. Appl. Opt. 53, 3028 (2014)

Article  ADS  Google Scholar 

Q. Wang, D. Cheng, Y. Wang, H. Hua, G. Jin, Design, tolerance, and fabrication of an optical see-through head-mounted display with free-form surface elements. Appl. Opt. 52, C88 (2013)

Article  Google Scholar 

K.J. Gåsvik, Optical Metrology, 3rd ed. (Wiley, 2002).

S. Zhang, Recent progresses on real-time 3D shape measurement using digital fringe projection techniques. Opt. Lasers Eng. 48, 149–158 (2010)

Article  ADS  Google Scholar 

M.C. Knauer, J. Kaminski, G. Hausler Phase measuring deflectometry: a new approach to measure specular free-form surfaces, in Optical Metrology in Production Engineering (Vol. 5457, pp. 366–376). SPIE (2004)

J.L. Flores, R. Legarda-Saenz, G. Garcia-Torales, Color deflectometry for phase retrieval using phase-shifting methods. Opt. Commun. 334, 298–302 (2015)

Article  ADS  Google Scholar 

T. Zhou, K. Chen, H. Wei, Y. Li, Improved method for rapid shape recovery of large specular surfaces based on phase measuring deflectometry. Appl. Opt. 55, 2760 (2016)

Article  ADS  Google Scholar 

P. Su, R.E. Parks, L. Wang, R.P. Angel, J.H. Burge, Software configurable optical test system: a computerized reverse Hartmann test. Appl. Opt. 49, 4404 (2010)

Article  ADS  Google Scholar 

P. Su, Y. Wang, J.H. Burge, K. Kaznatcheev, M. Idir, Non-null full field X-ray mirror metrology using SCOTS: a reflection deflectometry approach. Opt. Express 20, 12393 (2012)

Article  ADS  Google Scholar 

S. Wang, Y. Hou, D. Li, Q. Zhu, 3D shape measurement of convex aspheric surface using reverse Hartmann test. Opt. Commun. 464, 125552 (2020)

Article  Google Scholar 

T. Nomura, K. Kamiya, H. Miyashiro, S. Okuda, H. Tashiro, K. Yoshikawa, Shape measurements of mirror surfaces with a lateral-shearing interferometer during machine running. Precis. Eng. 22, 185–189 (1998)

Article  Google Scholar 

P. de Groot, J. Biegen, J. Clark, X. Colonna de Lega, D. Grigg, Optical interferometry for measurement of the geometric dimensions of industrial parts. Appl. Opt. 41, 3853 (2002)

Article  ADS  Google Scholar 

J.E. Greivenkamp, R.O. Gappinger, Design of a nonnull interferometer for aspheric wave fronts. Appl. Opt. 43, 5143 (2004)

Article  ADS  Google Scholar 

G. Baer, J. Schindler, C. Pruss, J. Siepmann, W. Osten, Fast and flexible non-null testing of aspheres and free-form surfaces with the tilted-wave-interferometer. Int. J. Optomechatronics 8, 242–250 (2014)

Article  ADS  Google Scholar 

I. Fortmeier, M. Stavridis, A. Wiegmann, M. Schulz, G. Baer, C. Pruss, W. Osten, and C. Elster, (2013) Sensitivity analysis of tilted-wave interferometer asphere measurements using virtual experiments, in Modeling Aspects in Optical Metrology IV, B. Bodermann, K. Frenner, and R. M. Silver, eds. (2013), 878907.

S. Seebacher, W. Osten, and W.P.O. Jueptner, Measuring shape and deformation of small objects using digital holography, in Proceedings of SPIE, R.J. Pryputniewicz, G.M. Brown, and W.P.O. Jueptner, eds. (1998), p. 104.

I. Yamaguchi, T. Ida, M. Yokota, K. Yamashita, Surface shape measurement by phase-shifting digital holography with a wavelength shift. Appl. Opt. 45, 7610 (2006)

Article  ADS  Google Scholar 

C.M. Vest, Holographic Interferometry, in Proceedings of the Society for Experimental Stress Analysis (1982).

R. Jones and C. Wykes, Holographic and Speckle Interferometry, 2 edition (Cambridge University Press, 1989).

J.C. Wyant, Testing aspherics using two-wavelength holography. Appl. Opt. 10, 2113 (1971)

Article  ADS  Google Scholar 

A. Anand, V. Trivedi, S. Mahajan, V.K. Chhaniwal, Z. Zalevsky, B. Javidi, Speckle-based optical sensor for low field Faraday rotation measurement. IEEE Sens. J. 13, 723–727 (2013)

Article  ADS  Google Scholar 

J. Kühn, T. Colomb, F. Montfort, F. Charrière, Y. Emery, E. Cuche, P. Marquet, C. Depeursinge, Real-time dual-wavelength digital holographic microscopy with a single hologram acquisition. Opt. Express 15, 7231 (2007)

Article  ADS  Google Scholar 

N.A. Turko, N.T. Shaked, Simultaneous two-wavelength phase unwrapping using an external module for multiplexing off-axis holography. Opt. Lett. 42, 73 (2017)

Article  ADS  Google Scholar 

I. Shevkunov, A new phase unwrapping method. J. Phys. Conf. Ser. 737, 012065 (2016)

Article  Google Scholar 

B. Gutmann, H. Weber, Phase unwrapping with the branch-cut method: role of phase-field direction. Appl. Opt. 39, 4802 (2000)

Article  ADS  Google Scholar 

Y. An, J.-S. Hyun, S. Zhang, Pixel-wise absolute phase unwrapping using geometric constraints of structured light system. Opt. Express 24, 18445 (2016)

Article  ADS  Google Scholar 

D.C. Ghiglia and M.D. Pritt, Two-Dimensional Phase Unwrapping: Theory, Algorithms, and Software (1998).

A. Asundi, Z. Wensen, Fast phase-unwrapping algorithm based on a gray-scale mask and flood fill. Appl. Opt. 37, 5416 (1998)

Article  ADS  Google Scholar 

J.M. Huntley, Noise-immune phase unwrapping algorithm. Appl. Opt. 28, 3268 (1989)

Article  ADS  Google Scholar 

U. Grenander, ed., Probability and Statistics (John Wiley and Sons, 1959).

X. Su, W. Chen, Reliability-guided phase unwrapping algorithm: a review. Opt. Lasers Eng. 42, 245–261 (2004)

Article  Google Scholar 

R. Cusack, J.M. Huntley, H.T. Goldrein, Improved noise-immune phase-unwrapping algorithm. Appl. Opt. 34, 781 (1995)

Article  ADS  Google Scholar 

R.M. Goldstein, H.A. Zebker, C.L. Werner, Satellite radar interferometry: Two-dimensional phase unwrapping. Radio Sci. 23, 713–720 (1988)

Article  ADS  Google Scholar 

J.J. Gierloff, Phase Unwrapping By Regions, in Current Developments in Optical Engineering II, p. 2 (1987)

N.H. Ching, D. Rosenfeld, M. Braun, Two-dimensional phase unwrapping using a minimum spanning tree algorithm. IEEE Trans. Image Process. 1, 355–365 (1992)

Article  ADS  Google Scholar 

M. Takeda, Phase unwrapping by a maximum cross-amplitude spanning tree algorithm: a comparative study. Opt. Eng. 35, 2345 (1996)

Article  ADS  Google Scholar 

D.C. Ghiglia, G.A. Mastin, L.A. Romero, Cellular-automata method for phase unwrapping. J. Opt. Soc. Am. A 4, 267 (1987)

Article  ADS  Google Scholar 

D.C. Ghiglia, L.A. Romero, Minimum Lp-norm two-dimensional phase unwrapping. J. Opt. Soc. Am. A 13, 1999 (1996)

Article  ADS  Google Scholar 

X.-Y. Su, G. von Bally, D. Vukicevic, Phase-stepping grating profilometry: utilization of intensity modulation analysis in complex objects evaluation. Opt. Commun. 98, 141–150 (1993)

Article  ADS  Google Scholar 

A. Baldi, F. Bertolino, F. Ginesu, On the performance of some unwrapping algorithms. Opt. Lasers Eng. 37, 313–330 (2002)

Article  Google Scholar 

K. Itoh, Analysis of the phase unwrapping algorithm. Appl. Opt. 21, 2470 (1982)

Article  ADS  Google Scholar 

K. Wang, Y. Li, Q. Kemao, J. Di, J. Zhao, One-step robust deep learning phase unwrapping. Opt. Express 27, 15100 (2019)

Article  ADS  Google Scholar 

G. Dardikman-Yoffe, D. Roitshtain, S.K. Mirsky, N.A. Turko, M. Habaza, N.T. Shaked, PhUn-Net: ready-to-use neural network for unwrapping quantitative phase images of biological cells. Biomed. Opt. Express 11, 1107 (2020)

Article  Google Scholar 

K. Sumanth, V. Ravi, R.K. Gorthi, A multi-task learning for 2D phase unwrapping in fringe projection. IEEE Signal Process. Lett. 29, 797–801 (2022)

Article  ADS  Google Scholar 

Z. Wang, S. Li, Phase unwrapping through a branch-cut-based cut-bridging and window-patching method. Appl. Opt. 38, 805 (1999)

Article  ADS  Google Scholar 

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