參考文獻 |
參考文獻
[1]D. Gabor, "A new microscopic principle," Nature, 161, 777 (1948).
[2]R. J. Collier, C. B. Bruckhardt, and L. H. Lin, Optical holography, Academic press, New York (1971).
[3]A. Ashkin, G. D. Boyd, J. M. Dziedzic, R. C. Smith, A. A. Ballman, J. J. Levinstein, and K. Nassau, "Optically-induced refractive index inhomogeneities in LiNbO3 and LiTaO3," Appl. Phys. Lett. 9, 72 (1966).
[4]F. S. Chen, J. T. LaMacchia, and D.B. Fraser, "Holographic storage in lithium niobate," Appl. Phys. Lett. 13, 223 (1968).
[5]F. S. Chen, "Optically induced change of refractive indices in LiNbO3 and LiTaO3, " j. Appl. Phys. 40, 3389 (1969).
[6]L. Young, W. K. Y. Wong, M. L. W. Thewait and W. D. Crnish, "Theory of formation of phase holograms in lithium niobate," Appl. Phys. Lett. 24, 264 (1974).
[7]G. A. Alphonse, R. C. Alig, O. L. Staebler and W. Phillips, "Time-dependent characteristics of photo-induced space charge field and phase holograms in lithium niobate and other photorefractive materials," RCA Review 36, 213 (1975).
[8]D. Vonderlinde and A. M. Glass, "Photorefractive effects for reversible holographic storge of information," J. Appl. Phys. 8,85 (1975).
[9]D. M. Kim, R. R. Shah, T. A. Rabson and F. K. Tittel, "Nonlinear dynamic theory for photorefractive phase hologram formation," Appl. Phys. Lett. 28, 338 (1976).
[10]N. V. Kukhtarev, V. B. Markov, S. G. Odulov, M. S. Soskin and V. L. Vinetskii, "Holographic storage in electrooptic crystals. I. Steady state," Ferroelectric 22, 949 (1979).
[11]J. Feiberg, D. Heiman, A. R. Tanguay and R. W. Hellwarth, "Photorefractive effects and light-induced charge migration in barium titanate," J. Appl. Phys. 51, 1297 (1980).
[12]J. Feinberg, and R.W. Hellwarth, "Phase-conjugating mirror with continuous-wave ," Opt. Lett. 5, 519 (1980).
[13]J. Feinberg, "Self-pumped, continuous-wave phase conjugator using internal reflection," Opt. Lett. 7, 486 (1982).
[14]J. Feinberg, "Asymmetric self-defocusing of an optical beam from the photorefractive effect," J. Opt. Soc. Am. 72, 46 (1982).
[15]K.R. MacDonald and J. Feinberg, "Theory of a self-pumped phase conjugator with two coupled interaction region," J. Opt. Soc. Am., vol. 73, pp. 548-553 (1983).
[16]T.Y. Chang, and R.W. Hellwarth, "Optical phase conjugation by backscttering in barium titanate", Opt. Lett. 10, 408 (1985)
[17]M.D. Ewbank, "Mechanism for photorefractive phase conjugation using incoherent beams," Opt. Lett. 13, 47 (1988).
[18]H. F. Yau, P. J. Wang, E. Y. Pan and J. Chen, "Self-pumped Phase Conjugation with Femtosecond Pulses Using BaTiO3,"Opt. Lett. 21(15), 1168 (1996).
[19]H. F. Yau, P. J. Wang, E. Y. Pan,, J. Chen and J. Y. Chang "Self-pumped Phase Conjugation with Picosecond and Femtosecond Using BaTiO3," Opt. Commun. 135, 331 (1997).
[20]S. Ashihara, O. Matoba, T. Shimura, and K. Kuroda, ²Mutually pumped phase conjugators with picosecond pulses,² J. Opt. Soc. Am. B 15, 1971 (1998).
[21]B. Fischer, S. Weiss, and S. Sternkar, "Spatial light modulation and filtering effects in photorefractive wave mixing," Appl. Phys. Lett. 50, 483 (1987).
[22]P. Gunter, J.-P. Huiganrd, Photorefractive material and their applications I, Springer-Verlag, Berling (1988).
[23]P.S. Brody, "Grating structure in self-pumping barium titanate by local erasure," Appl. Phys. Lett. 53, 262 (1988).
[24]J. E. Ford, Y. Fainman, and S. H. Lee, "Time-integrating interferometry using photorefractive fannout," Opt. Lett. 13, 856 (1988).
[25]S. Weiss, M. Segev, S. Sternklar, and B. Fischer, "Photorefractive dynamic optical interconnects," Appl. Opt. 27, 3422 (1988).
[26]P. Yeh, T. Y. Chang, and P. H. Beckwith, "Real-time optical image subtraction using dynamic holographic interference in photorefractive media," Opt. Lett. 13, 586 (1988).
[27]P. Gunter, J.-P. Huiganrd, Photorefractive material and their applications II, Springer-Verlag, Berling (1989).
[28]J.E. Ford, Y. Fainman, and S.H. Lee, "Enhanced photorefractive performance of form 45-cut BaTiO3," Appl. Opt. 28, 4808 (1989).
[29]D. Wang, Z. Zhang, Y. Zhu, S. Zhang, and P. Ye, "Observation on the coupling channel of two mutually incoherent beams without internal reflection in BaTiO3," Opt. Commun. 73, 495 (1989).
[30]T.Y. Chang, "Spatial-mode cleanup of a pulsed laser beam through mutually pumped phase conjugation with a cw reference," Opt. Lett. 15, 1342 (1990).
[31]A.E. Chiou and P. Yeh, "Symmetry filters using optical correlation and convolution," Opt. Eng. 29, 1065 (1990).
[32]G. J. Dunning, D. M. Pepper, and M. B. Kein, "Control of self-pumped phase-conjugate reflectivity using incoherent erasure," Opt. Lett. 15, 99 (1990).
[33]M. Segev, Y. Ophir, and B. Fischer, "Nonlinear multi two-wave mixing, the fanning process and its bleaching in photorefractive media," Opt. Commun. 77, 265 (1990).
[34]M. Ogusu, S.-i. Tanaka, and K. Kuroda, "Optical logic operations using three-beam phase-conjugate interferometry," Jpn. J. of Appl. Phys. 29, L1265 (1990).
[35]D. Z. Anderson, C. Benkert, B. Chorbajian, and A. Hermanns, "Photorefractive filp-flop," Opt. Lett. 16, 250 (1991).
[36]P. Yeh, D. Zhang, and C. Gu, "Parallel subtraction of Fourier power spectrum using holographic interferometry," Opt. Lett. 17, 70 (1992)
[37]C.-C. Chang, Y.-P. Tong, and H.-F. Yau, "Rotational invariant pattern recognition using photorefractive correlator," Jpn. J. of Appl. Phys. 31, L43 (1992).
[38]F. T. S. Yu, S. Wu, S. Rajan, and D. A. Gregory, "Compact joint transform correlator with a thick photorefractive crystal," Appl. Opt. 31, 2416 (1992).
[39]Q. B. He, P. Yeh, L. J. Hu, S. P. Lin, T. S. Yeh, S. L. Tu, S. J. Yang, and K. Hsu, "Shift-invariant photorefractive joint-transform correlator using Fe:LiNbO3 crystal plates," Appl. Opt., 32, 3113 (1993).
[40]Y.-H. Hong, P. Xie, J.-H. Dai, Y. Zhu, H.-G. Yang, and H.-J. Zhang, "Fanning effects in photorefractive crystals," Opt. Lett. 18, 772 (1993).
[41]Y. S. Qiu, H. Li, T. S. Lu, J. Zhuang, and X. C. Gao, "Optical logic operations with self-pumped phase-conjugation output in photorefractive materials," Opt. Commun. 98, 29 (1993).
[42]D. Psaltis and F. Mok, "Holographic Memories," Scientific American, 273(5). 70 (1995).
[43]G. Asimellis, J. Khoury, J. Kane, and C. Woods, "Two-port photorefractive joint transform correlator," Opt. Lett. 20, 2517 (1995).
[44]J. Neumann, M. Rowe, and E. Kratzig, "Photorefractive amplification and generation of light beam in BaTiO3 controlled by the intensity of the pump light," Appl. Phys. B, 67, 73 (1998).
[45]C. C. Chang, T. C. Chen, L. C. Tang and H. F. Yau, "Elimination of dynamic instabilities in the +c-face incident photorefractive BaTiO3 mutually pumped phase conjugator," Jpn. J. Appl. Phys., Vol. 38, 567-570 (1999).
[46]C. C. Chang, Y. P. Tong, T. C. Chen, H. F. Yau and P. X. Ye, "Mutually pumped phase conjugator using a BaTiO3 crystal having two inclined faces," Appl. Phys. B, Accept (2000).
[47]H. C. Kung, H. F. Yau, H. Y. Lee, N. Kukhtarev, T. C. Chen, C. C. Sun, C. C. Chang and Y. P. Tong, "Double phase conjugation with orthogonally polarized beams in a BaTiO3 crystal," Opt. Lett, Accept, April (2000).
[48]H. Y. Lee, T. C. Chen and H. F. Yau, "Coherent optical signal transferring upon requesting using a BaTiO3 crystal," Revised to Applied Optics, May (2000).
[49]T. C. Chen, C. C. Chang, L. C. Tang and H. F. Yau, "High-resolution double self-pumped phase conjugation with +c-face incident configuration in a BaTiO3, " Submitted to Jpn. J. Appl. Phys., April (2000).
[50]H. F. Yau, H. C. Kung, T. C. Chen, H. Y. Lee, C. C. Sun, C. C. Chang, Y. P. Tong and J. Chen, "Ordinary Polarized Phase Conjugator using Photovoltaic Effect," Submitted to Optics Communications, May (2000). |