Abstract

Inaccuracies introduced in quantitative phase digital holographic microscopy by the use of nontelecentric imaging systems are analyzed. Computer modeling of the experimental result shows that even negligible errors in the radius and center of curvature of the numerical compensation needed to get rid of the remaining quadratic phase factor introduce errors in the phase measurements; these errors depend on the position of the object in the field-of-view. However, when a telecentric imaging system is utilized for the recording of the holograms, the numerical modeling and experimental results show the shift-invariant behavior of the quantitative-phase digital holographic microscope.

© 2013 Optical Society of America

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2011 (2)

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[CrossRef]

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D. P. Kelly, B. M. Hennelly, N. Pandey, T. J. Naughton, and W. T. Rhodes, Opt. Eng. 48, 095801 (2009).
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2008 (1)

J. Kuhn, F. Charriere, T. Colomb, E. Cuche, F. Montfort, Y. Emery, P. Marquet, and C. Depeursinge, Meas. Sci. Technol. 19, 074007 (2008).
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2005 (3)

2003 (1)

2000 (1)

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Best-Popescu, C. A.

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Bevilacqua, F.

Bhaduri, B.

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Charriere, F.

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[CrossRef]

Charrière, F.

Choi, Y. S.

Colomb, T.

Coppola, G.

Cuche, E.

Dasari, R. R.

G. Popescu, T. Ikeda, K. Goda, C. A. Best-Popescu, M. Laposata, S. Manley, R. R. Dasari, K. Badizadegan, and M. S. Feld, Phys. Rev. Lett. 97, 218101 (2006).
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T. Ikeda, G. Popescu, R. R. Dasari, and M. S. Feld, Opt. Lett. 30, 1165 (2005).
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De Nicola, S.

Depeursinge, C.

Doblas, A.

Emery, Y.

J. Kuhn, F. Charriere, T. Colomb, E. Cuche, F. Montfort, Y. Emery, P. Marquet, and C. Depeursinge, Meas. Sci. Technol. 19, 074007 (2008).
[CrossRef]

P. Marquet, B. Rappaz, P. J. Magistretti, E. Cuche, Y. Emery, T. Colomb, and C. Depeursinge, Opt. Lett. 30, 468 (2005).
[CrossRef]

Feld, M. S.

G. Popescu, T. Ikeda, K. Goda, C. A. Best-Popescu, M. Laposata, S. Manley, R. R. Dasari, K. Badizadegan, and M. S. Feld, Phys. Rev. Lett. 97, 218101 (2006).
[CrossRef]

T. Ikeda, G. Popescu, R. R. Dasari, and M. S. Feld, Opt. Lett. 30, 1165 (2005).
[CrossRef]

Ferraro, P.

Finizio, A.

Goda, K.

G. Popescu, T. Ikeda, K. Goda, C. A. Best-Popescu, M. Laposata, S. Manley, R. R. Dasari, K. Badizadegan, and M. S. Feld, Phys. Rev. Lett. 97, 218101 (2006).
[CrossRef]

Grilli, S.

Healy, J. J.

D. P. Kelly, J. J. Healy, B. M. Hennelly, and J. T. Sheridan, J. Eur. Opt. Soc. 6, 11034 (2011).
[CrossRef]

Hennelly, B. M.

D. P. Kelly, J. J. Healy, B. M. Hennelly, and J. T. Sheridan, J. Eur. Opt. Soc. 6, 11034 (2011).
[CrossRef]

D. P. Kelly, B. M. Hennelly, N. Pandey, T. J. Naughton, and W. T. Rhodes, Opt. Eng. 48, 095801 (2009).
[CrossRef]

Ikeda, T.

G. Popescu, T. Ikeda, K. Goda, C. A. Best-Popescu, M. Laposata, S. Manley, R. R. Dasari, K. Badizadegan, and M. S. Feld, Phys. Rev. Lett. 97, 218101 (2006).
[CrossRef]

T. Ikeda, G. Popescu, R. R. Dasari, and M. S. Feld, Opt. Lett. 30, 1165 (2005).
[CrossRef]

Kelly, D. P.

D. P. Kelly, J. J. Healy, B. M. Hennelly, and J. T. Sheridan, J. Eur. Opt. Soc. 6, 11034 (2011).
[CrossRef]

D. P. Kelly, B. M. Hennelly, N. Pandey, T. J. Naughton, and W. T. Rhodes, Opt. Eng. 48, 095801 (2009).
[CrossRef]

Kim, M.

Kuhn, J.

J. Kuhn, F. Charriere, T. Colomb, E. Cuche, F. Montfort, Y. Emery, P. Marquet, and C. Depeursinge, Meas. Sci. Technol. 19, 074007 (2008).
[CrossRef]

Kühn, J.

Laposata, M.

G. Popescu, T. Ikeda, K. Goda, C. A. Best-Popescu, M. Laposata, S. Manley, R. R. Dasari, K. Badizadegan, and M. S. Feld, Phys. Rev. Lett. 97, 218101 (2006).
[CrossRef]

Lee, S. J.

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[CrossRef]

Mann, C.

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Mir, M.

Montfort, F.

Naughton, T. J.

D. P. Kelly, B. M. Hennelly, N. Pandey, T. J. Naughton, and W. T. Rhodes, Opt. Eng. 48, 095801 (2009).
[CrossRef]

Nugent, K. A.

Paganin, D.

Pandey, N.

D. P. Kelly, B. M. Hennelly, N. Pandey, T. J. Naughton, and W. T. Rhodes, Opt. Eng. 48, 095801 (2009).
[CrossRef]

Pham, H.

Pierattini, G.

Popescu, G.

B. Bhaduri, H. Pham, M. Mir, and G. Popescu, Opt. Lett. 37, 1094 (2012).
[CrossRef]

G. Popescu, T. Ikeda, K. Goda, C. A. Best-Popescu, M. Laposata, S. Manley, R. R. Dasari, K. Badizadegan, and M. S. Feld, Phys. Rev. Lett. 97, 218101 (2006).
[CrossRef]

T. Ikeda, G. Popescu, R. R. Dasari, and M. S. Feld, Opt. Lett. 30, 1165 (2005).
[CrossRef]

Rappaz, B.

Rhodes, W. T.

D. P. Kelly, B. M. Hennelly, N. Pandey, T. J. Naughton, and W. T. Rhodes, Opt. Eng. 48, 095801 (2009).
[CrossRef]

Roberts, A.

Saavedra, G.

Sánchez-Ortiga, E.

Seo, E. S.

Seo, K. W.

Sheridan, J. T.

D. P. Kelly, J. J. Healy, B. M. Hennelly, and J. T. Sheridan, J. Eur. Opt. Soc. 6, 11034 (2011).
[CrossRef]

Yu, L.

Appl. Opt. (4)

J. Eur. Opt. Soc. (1)

D. P. Kelly, J. J. Healy, B. M. Hennelly, and J. T. Sheridan, J. Eur. Opt. Soc. 6, 11034 (2011).
[CrossRef]

J. Opt. Soc. Am. A (2)

Meas. Sci. Technol. (1)

J. Kuhn, F. Charriere, T. Colomb, E. Cuche, F. Montfort, Y. Emery, P. Marquet, and C. Depeursinge, Meas. Sci. Technol. 19, 074007 (2008).
[CrossRef]

Opt. Eng. (1)

D. P. Kelly, B. M. Hennelly, N. Pandey, T. J. Naughton, and W. T. Rhodes, Opt. Eng. 48, 095801 (2009).
[CrossRef]

Opt. Express (1)

Opt. Lett. (6)

Phys. Rev. Lett. (1)

G. Popescu, T. Ikeda, K. Goda, C. A. Best-Popescu, M. Laposata, S. Manley, R. R. Dasari, K. Badizadegan, and M. S. Feld, Phys. Rev. Lett. 97, 218101 (2006).
[CrossRef]

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Figures (3)

Fig. 1.
Fig. 1.

Illustration of the transmission DHM for evaluating the accuracy of the QPI. The MO and TL are utilized for achieving telecentric or nontelecentric operation of the microscope. See text for further details.

Fig. 2.
Fig. 2.

Nontelecentric DHM. Phase profiles along the center of the disk located at different places of the FOV. The solid and dotted curves correspond to experimental and numerical results, respectively.

Fig. 3.
Fig. 3.

Telecentric DHM. Phase profiles along the center of the disk located at different places of the FOV. The solid and dotted curves correspond to experimental and numerical results, respectively.

Equations (3)

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H(x,y)=|O|2+|R|2+OR*+O*R,
O(x,y)=1Mexp[i2πλ(fTL+fMO+d)]×exp[iπλC(x2+y2)]{O(xM,yM)2P˜(xλfTL,yλfTL)}.
C=fTL2fTLd,

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