Abstract

The effect of Rh doping in Bi12TiO20 (BTO) crystals on the photosensitivity and recording speed at 1064 nm is reported. Response time of 0.1 s is measured during real-time holographic recording without any preliminary treatments. Once the crystal is pre-excited with a green light, the detected response time becomes 0.02 s. A possibility to implement BTO:Rh crystal plate with liquid crystals into a hybrid organic/inorganic device is demonstrated, which opens perspectives for further near-infrared applications.

© 2013 Optical Society of America

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I. Gvozdovskyy, K. Shcherbin, D. R. Evans, and G. Cook, Appl. Phys. B 104, 883 (2011).
[CrossRef]

V. Marinova, R. C. Liu, S. H. Lin, and K. Y. Hsu, Opt. Lett. 36, 1981 (2011).
[CrossRef]

2010 (2)

S. Kober, J. Prauzner, M. Salvador, F. B. Kooistra, J. C. Hummelen, and K. Meerholz, Adv. Mater. 22, 1383 (2010).
[CrossRef]

M. G. Caroena, M. Mori, M. R. R. Gusualdi, E. A. Liberti, E. Ferrara, and M. Muramatsu, J. Biomech. 43, 680 (2010).
[CrossRef]

2008 (1)

U. Bortolozzo, S. Residori, and J. P. Huignard, J. Phys. D 41, 224007 (2008).
[CrossRef]

2007 (2)

2006 (1)

E. A. Barbosa, R. Verzini, and J. F. Carvalho, Opt. Commun. 263, 189 (2006).
[CrossRef]

2003 (2)

A. Radoua, P. Delaye, R. Pankrath, and G. Roosen, J. Opt. A 5, S477 (2003).
[CrossRef]

V. Marinova, S. H. Lin, V. Sainov, M. Gospodinov, and K. Y. Hsu, J. Opt. A 5, S500 (2003).
[CrossRef]

2002 (1)

S. Neov, V. Marinova, M. Reehuis, and R. Sonntag, Appl. Phys. A 74, S1016 (2002).
[CrossRef]

2000 (1)

1999 (1)

1994 (2)

1991 (1)

P. Sveshtarov and M. Gospodinov, J. Cryst. Growth 113, 186 (1991).
[CrossRef]

1985 (1)

R. Oberschmid, Phys. Status Solidi A 89, 263 (1985).
[CrossRef]

1982 (1)

Aubourg, P.

Bach, T.

Barbosa, E. A.

E. A. Barbosa, R. Verzini, and J. F. Carvalho, Opt. Commun. 263, 189 (2006).
[CrossRef]

Bortolozzo, U.

U. Bortolozzo, S. Residori, and J. P. Huignard, J. Phys. D 41, 224007 (2008).
[CrossRef]

U. Bortolozzo, S. Residori, and J. P. Huignard, J. Nonlinear Opt. Phys. Mater. 16, 231 (2007).
[CrossRef]

Bryushinin, M. A.

Caroena, M. G.

M. G. Caroena, M. Mori, M. R. R. Gusualdi, E. A. Liberti, E. Ferrara, and M. Muramatsu, J. Biomech. 43, 680 (2010).
[CrossRef]

Carvalho, J. F.

E. A. Barbosa, R. Verzini, and J. F. Carvalho, Opt. Commun. 263, 189 (2006).
[CrossRef]

Cook, G.

I. Gvozdovskyy, K. Shcherbin, D. R. Evans, and G. Cook, Appl. Phys. B 104, 883 (2011).
[CrossRef]

Delaye, P.

A. Radoua, P. Delaye, R. Pankrath, and G. Roosen, J. Opt. A 5, S477 (2003).
[CrossRef]

Evans, D. R.

I. Gvozdovskyy, K. Shcherbin, D. R. Evans, and G. Cook, Appl. Phys. B 104, 883 (2011).
[CrossRef]

Ferrara, E.

M. G. Caroena, M. Mori, M. R. R. Gusualdi, E. A. Liberti, E. Ferrara, and M. Muramatsu, J. Biomech. 43, 680 (2010).
[CrossRef]

Frejlich, J.

J. Frejlich, Photorefractive Materials (Wiley-Interscience, 2007).

Gospodinov, M.

V. Marinova, S. H. Lin, V. Sainov, M. Gospodinov, and K. Y. Hsu, J. Opt. A 5, S500 (2003).
[CrossRef]

P. Sveshtarov and M. Gospodinov, J. Cryst. Growth 113, 186 (1991).
[CrossRef]

Grabar, A. A.

Gu, C.

P. Yeh and C. Gu, Optics of Liquid Crystal Display (Wiley-Interscience, 2010).

Günter, P.

Gusualdi, M. R. R.

M. G. Caroena, M. Mori, M. R. R. Gusualdi, E. A. Liberti, E. Ferrara, and M. Muramatsu, J. Biomech. 43, 680 (2010).
[CrossRef]

Gvozdovskyy, I.

I. Gvozdovskyy, K. Shcherbin, D. R. Evans, and G. Cook, Appl. Phys. B 104, 883 (2011).
[CrossRef]

Hareng, M.

Hsu, K. Y.

V. Marinova, R. C. Liu, S. H. Lin, and K. Y. Hsu, Opt. Lett. 36, 1981 (2011).
[CrossRef]

V. Marinova, S. H. Lin, V. Sainov, M. Gospodinov, and K. Y. Hsu, J. Opt. A 5, S500 (2003).
[CrossRef]

Huignard, J. P.

U. Bortolozzo, S. Residori, and J. P. Huignard, J. Phys. D 41, 224007 (2008).
[CrossRef]

U. Bortolozzo, S. Residori, and J. P. Huignard, J. Nonlinear Opt. Phys. Mater. 16, 231 (2007).
[CrossRef]

P. Aubourg, J. P. Huignard, M. Hareng, and R. A. Mullen, Appl. Opt. 21, 3706 (1982).
[CrossRef]

Hummelen, J. C.

S. Kober, J. Prauzner, M. Salvador, F. B. Kooistra, J. C. Hummelen, and K. Meerholz, Adv. Mater. 22, 1383 (2010).
[CrossRef]

Jazbinšek, M.

Kamshilin, A. A.

Klein, M. B.

Kober, S.

S. Kober, J. Prauzner, M. Salvador, F. B. Kooistra, J. C. Hummelen, and K. Meerholz, Adv. Mater. 22, 1383 (2010).
[CrossRef]

Kobozev, O.

Kooistra, F. B.

S. Kober, J. Prauzner, M. Salvador, F. B. Kooistra, J. C. Hummelen, and K. Meerholz, Adv. Mater. 22, 1383 (2010).
[CrossRef]

Kulikov, V. V.

Liberti, E. A.

M. G. Caroena, M. Mori, M. R. R. Gusualdi, E. A. Liberti, E. Ferrara, and M. Muramatsu, J. Biomech. 43, 680 (2010).
[CrossRef]

Lin, S. H.

V. Marinova, R. C. Liu, S. H. Lin, and K. Y. Hsu, Opt. Lett. 36, 1981 (2011).
[CrossRef]

V. Marinova, S. H. Lin, V. Sainov, M. Gospodinov, and K. Y. Hsu, J. Opt. A 5, S500 (2003).
[CrossRef]

Liu, R. C.

Marinova, V.

V. Marinova, R. C. Liu, S. H. Lin, and K. Y. Hsu, Opt. Lett. 36, 1981 (2011).
[CrossRef]

V. Marinova, S. H. Lin, V. Sainov, M. Gospodinov, and K. Y. Hsu, J. Opt. A 5, S500 (2003).
[CrossRef]

S. Neov, V. Marinova, M. Reehuis, and R. Sonntag, Appl. Phys. A 74, S1016 (2002).
[CrossRef]

Meerholz, K.

S. Kober, J. Prauzner, M. Salvador, F. B. Kooistra, J. C. Hummelen, and K. Meerholz, Adv. Mater. 22, 1383 (2010).
[CrossRef]

Mokrushina, E. V.

Montemezzani, G.

Mori, M.

M. G. Caroena, M. Mori, M. R. R. Gusualdi, E. A. Liberti, E. Ferrara, and M. Muramatsu, J. Biomech. 43, 680 (2010).
[CrossRef]

Mullen, R. A.

Muramatsu, M.

M. G. Caroena, M. Mori, M. R. R. Gusualdi, E. A. Liberti, E. Ferrara, and M. Muramatsu, J. Biomech. 43, 680 (2010).
[CrossRef]

Nelson, C. C.

Neov, S.

S. Neov, V. Marinova, M. Reehuis, and R. Sonntag, Appl. Phys. A 74, S1016 (2002).
[CrossRef]

Oberschmid, R.

R. Oberschmid, Phys. Status Solidi A 89, 263 (1985).
[CrossRef]

Odoulov, S. G.

Pankrath, R.

A. Radoua, P. Delaye, R. Pankrath, and G. Roosen, J. Opt. A 5, S477 (2003).
[CrossRef]

Petrov, A. A.

Prauzner, J.

S. Kober, J. Prauzner, M. Salvador, F. B. Kooistra, J. C. Hummelen, and K. Meerholz, Adv. Mater. 22, 1383 (2010).
[CrossRef]

Prokofiev, V. V.

Radoua, A.

A. Radoua, P. Delaye, R. Pankrath, and G. Roosen, J. Opt. A 5, S477 (2003).
[CrossRef]

Raita, E.

Reehuis, M.

S. Neov, V. Marinova, M. Reehuis, and R. Sonntag, Appl. Phys. A 74, S1016 (2002).
[CrossRef]

Residori, S.

U. Bortolozzo, S. Residori, and J. P. Huignard, J. Phys. D 41, 224007 (2008).
[CrossRef]

U. Bortolozzo, S. Residori, and J. P. Huignard, J. Nonlinear Opt. Phys. Mater. 16, 231 (2007).
[CrossRef]

Roosen, G.

A. Radoua, P. Delaye, R. Pankrath, and G. Roosen, J. Opt. A 5, S477 (2003).
[CrossRef]

Sainov, V.

V. Marinova, S. H. Lin, V. Sainov, M. Gospodinov, and K. Y. Hsu, J. Opt. A 5, S500 (2003).
[CrossRef]

Salvador, M.

S. Kober, J. Prauzner, M. Salvador, F. B. Kooistra, J. C. Hummelen, and K. Meerholz, Adv. Mater. 22, 1383 (2010).
[CrossRef]

Schwartz, R. N.

Shcherbin, K.

I. Gvozdovskyy, K. Shcherbin, D. R. Evans, and G. Cook, Appl. Phys. B 104, 883 (2011).
[CrossRef]

Shcherbin, K. V.

Shumeljuk, A. N.

Sokolov, I. A.

Sonntag, R.

S. Neov, V. Marinova, M. Reehuis, and R. Sonntag, Appl. Phys. A 74, S1016 (2002).
[CrossRef]

Sveshtarov, P.

P. Sveshtarov and M. Gospodinov, J. Cryst. Growth 113, 186 (1991).
[CrossRef]

Verzini, R.

E. A. Barbosa, R. Verzini, and J. F. Carvalho, Opt. Commun. 263, 189 (2006).
[CrossRef]

Vysochanskii, Y. M.

Wechsler, B. A.

Yeh, P.

P. Yeh and C. Gu, Optics of Liquid Crystal Display (Wiley-Interscience, 2010).

Adv. Mater. (1)

S. Kober, J. Prauzner, M. Salvador, F. B. Kooistra, J. C. Hummelen, and K. Meerholz, Adv. Mater. 22, 1383 (2010).
[CrossRef]

Appl. Opt. (1)

Appl. Phys. A (1)

S. Neov, V. Marinova, M. Reehuis, and R. Sonntag, Appl. Phys. A 74, S1016 (2002).
[CrossRef]

Appl. Phys. B (1)

I. Gvozdovskyy, K. Shcherbin, D. R. Evans, and G. Cook, Appl. Phys. B 104, 883 (2011).
[CrossRef]

J. Biomech. (1)

M. G. Caroena, M. Mori, M. R. R. Gusualdi, E. A. Liberti, E. Ferrara, and M. Muramatsu, J. Biomech. 43, 680 (2010).
[CrossRef]

J. Cryst. Growth (1)

P. Sveshtarov and M. Gospodinov, J. Cryst. Growth 113, 186 (1991).
[CrossRef]

J. Nonlinear Opt. Phys. Mater. (1)

U. Bortolozzo, S. Residori, and J. P. Huignard, J. Nonlinear Opt. Phys. Mater. 16, 231 (2007).
[CrossRef]

J. Opt. A (2)

A. Radoua, P. Delaye, R. Pankrath, and G. Roosen, J. Opt. A 5, S477 (2003).
[CrossRef]

V. Marinova, S. H. Lin, V. Sainov, M. Gospodinov, and K. Y. Hsu, J. Opt. A 5, S500 (2003).
[CrossRef]

J. Opt. Soc. Am. B (3)

J. Phys. D (1)

U. Bortolozzo, S. Residori, and J. P. Huignard, J. Phys. D 41, 224007 (2008).
[CrossRef]

Opt. Commun. (1)

E. A. Barbosa, R. Verzini, and J. F. Carvalho, Opt. Commun. 263, 189 (2006).
[CrossRef]

Opt. Lett. (3)

Phys. Status Solidi A (1)

R. Oberschmid, Phys. Status Solidi A 89, 263 (1985).
[CrossRef]

Other (2)

P. Yeh and C. Gu, Optics of Liquid Crystal Display (Wiley-Interscience, 2010).

J. Frejlich, Photorefractive Materials (Wiley-Interscience, 2007).

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Figures (3)

Fig. 1.
Fig. 1.

Optical absorption spectra of BTO:Rh crystal.

Fig. 2.
Fig. 2.

Real-time holographic behavior of BTO:Rh crystal at 1064 nm: (a) without any preliminary treatment and (b) after 532 nm pre-excitation with I=50mW/cm2.

Fig. 3.
Fig. 3.

(a) Experimental setup and (b) phase retardation versus Ipump, inset graph-Iprobe beam versus Ipump.

Equations (1)

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ΔΦ(Ip)=2πΔn(Ip)dλ=sin12T(Ip),

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