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Two cases of phase-shifting interferometry for wave front recovery from heterodyne hologram storage: piezoelectric transducer and modulation of polarization

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EN
Abstrakty
EN
Heterodyne holographic interferometry is a well-known interferometric technique for high precision measurements of the phase difference between two recorded wave fronts. These wave fronts are typically registered at a given distance from the object under inspection. Although the affinity of heterodyne techniques with the phase-shifting ones is immediate, reports on concrete implemented set-ups from the former type of techniques as adaptations into the second type seems to be not so widely spread as convenient. To illustrate this point, in this communication we demonstrate two phase-shifting methods as applied to heterodyne holograms, each variant using a different shifting method for phase shifting. One method is based on a conventional piezoelectric stack transducer and the other method comprises modulation of polarization. The alternatives that these two techniques offer could be of direct benefit in dynamic holography.
Czasopismo
Rocznik
Strony
579--590
Opis fizyczny
Bibliogr. 15 poz., rys.
Twórcy
  • Benemérita Universidad Autónoma de Puebla, Pue. 72570, México
  • Benemérita Universidad Autónoma de Puebla, Pue. 72570, México
  • Universidad Tecnológica de Tulancingo, Hgo. 43642, México
  • Benemérita Universidad Autónoma de Puebla, Pue. 72570, México
  • Benemérita Universidad Autónoma de Puebla, Pue. 72570, México
Bibliografia
  • [1] DÄNDLIKER R., Heterodyne holographic interferometry, [In] Progress in Optics, [Ed.] E. Wolf, Vol. 17, North-Holland Publishing, Amsterdam, 1980, pp. 1–84.
  • [2] KREIS T., Handbook of Holographic Interferometry: Optical and Digital Methods, Wiley-VCH Verlag, Weinheim, 2005.
  • [3] LE CLERC F., COLLOT L., GROSS M., Numerical heterodyne holography with two-dimensional photodetector arrays, Optics Letters 25(10), 2000, pp. 716–718.
  • [4] SUCK S.Y., COLLIN S., BARDOU N., DE WILDE Y., TESSIER G., Imaging the three-dimensional scattering pattern of plasmonic nanodisk chains by digital heterodyne holography, Optics Letters 36(6), 2011, pp. 849–851.
  • [5] RODRIGUEZ-ZURITA G., MENESES-FABIAN C., TOTO-ARELLANO N.I., VÁZQUEZ-CASTILLO J.F., ROBLEDO-SÁNCHEZ C., One-shot phase-shifting phase-grating interferometry with modulation of polarization: case of four interferograms, Optics Express 16(11), 2008, pp. 7806–7817.
  • [6] GHIGLIA D.C., PRITT M.D., Two-Dimensional Phase Unwrapping: Theory, Algorithms, and Software, Chapter 4, Wiley, New York, 1998.
  • [7] SERVIN M., ESTRADA J.C., QUIROGA J.A., The general theory of phase shifting algorithms, Optics Express 17(24), 2009, pp. 21867–21881.
  • [8] KERR D., KAUFMANN G.H., GALIZZI G.E., Unwrapping of interferometric phase-fringe maps by the discrete cosine transform, Applied Optics 35(5), 1996, pp. 810–816.
  • [9] GHIGLIA D.C., ROMERO L.A., Robust two-dimensional weighted and unweighted phase unwrapping that uses fast transforms and iterative methods, Journal of the Optical Society of America A 11(1), 1994, pp. 107–117.
  • [10] NOVAK M., MILLERD J., BROCK N., NORTH-MORRIS M., HAYES J., WYANT J., Analysis of a micropolarizer array-based simultaneous phase-shifting interferometer, Applied Optics 44(32), 2005, pp. 6861–6868.
  • [11] RODRIGUEZ-ZURITA G., TOTO-ARELLANO N.I., MENESES-FABIAN C., VÁZQUEZ-CASTILLO J.F., One-shot phase-shifting interferometry: five, seven, and nine interferograms, Optics Letters 33(23), 2008, pp. 2788–2790.
  • [12] RODRIGUEZ-ZURITA G., VÁZQUEZ-CASTILLO J.F., TOTO-ARELLANO I., MENESES-FABIAN C., JIMÉNEZ-MONTERO L.E., Modulation of polarization in interferometric holography and two references, Advanced Phase Measurement Methods in Optics and Imaging, Monte Verità, Locarno, Suiza, May 17–21, 2010, AIP Conference Proceedings, Vol. 1236, 2010, pp. 87–90.
  • [13] TOTO-ARELLANO N.-I., SERRANO-GARCÍA D.-I., MARTÍNEZ-GARCÍA A., Parallel two-step phase shifting interferometry using a double cyclic shear interferometer, Optics Express 21(26), 2013, pp. 31983–31989.
  • [14] FLORES MUÑOZ V.H., TOTO ARELLANO N.-I., SERRANO GARCÍA D.I., MARTÍNEZ GARCÍA A., RODRÍGUEZ ZURITA G., GARCÍA LECHUGA L., Measurement of mean thickness of transparent samples using simultaneous phase shifting interferometry with four interferograms, Applied Optics 55(15), 2016, pp. 4047–4051.
  • [15] TAKEDA M., INA H., KOBAYASHI S., Fourier-transform method of fringe-pattern analysis for computer-based topography and interferometry, Journal of the Optical Society of America 72(1), 1982, pp. 156–160.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-7702b615-acb2-4443-9914-4157d33a780c
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