Special Report: Optical Patterns

M. Takahashi, P. Vaccaro, K. Fujita, T. Watanabe, T. Mukaihara, F. Koyama, and K. Iga, "An InGaAs-GaAs vertical-cavity surface emitting laser grown on GaAs(311) substrate having low threshold and stable polarization," IEEE Photon. Technol. Lett. 8, 737-739 (1996).

C. Chang-Hasnain, J. P. Harbison, C. E. Zah, M. W. Maeda, L. T. Florez, N. G. Stoffel, and T. P. Lee, "Multiple wavelength tunable surface emitting laser arrays," IEEE J. Quantum Electron. 27, 1368-1376 (1991).

Y. Wupen, G. S. Li, and C.J. Chang-Hasnain, "Multiple-wavelength vertical-cavity surface emitting laser arrays with a record wavelength span," IEEE Photon. Technol. Lett. 8, 4-6 (1996).

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M. G. Peters, D. B. Young, F. H. Peters, J. W. Scott, B. J. Thibeault, L. A. Coldren, "17.3% peak wall plug efficiency vertical-cavity surface emitting lasers using lower barrier mirrors," IEEE Photon. Technol. Lett. 6, 31-33 (1994).

K. L. Lear, K. D. Choquette, R. P. Schneider, Jr., S. P. Kilcoyne, and K. M. Geib, "Vertical-cavity surface emitting lasers with 50% power conversion efficiency," in Conference on Lasers and Electro-Optics, Vol. 15 of 1995 OSA Technical Digest Series (Optical Society of America, Washington, D. C., 1995).

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A. Karlsson, R. Schatz, and G. Bjork, "On the modulation bandwidth of semiconductor microcavity lasers," IEEE Photon. Technol. Lett. 6, 1312-1314 (1994).

C. T. Troy, "Vertical cavity laser hits new power levels- High-temperature operation broadens applications," Photon. Spectra, p. 24 (March 1993).

R. A. Morgan, K. Kojima, M. T. Asom, G. D. Guth and M. W. Focht, " 1W (pulsed) vertical cavity surface emitting laser," Electron. Lett. 29, 206-207 (1993).

See for example, S. Jutamulia, ed., Special issue on optical information processing, Proc. IEEE, 84 (5) (1996).

F. T. S. Yu, D. A. Gregory, "Optical pattern recognition," Proc. IEEE, 84, 733-752 (1996).

Y. Ichioka, T. Iwaki, and K. Matsuoka, "Optical information processing and beyond," Proc. IEEE, 84, 694-719 (1996).

E. R. Kretzmer, Bell Telephone Jour. 31 (1951).

L. S. E. Kovasznay and A. Arman, "Optical autocorrelation measurement of two-dimensional random patterns," Rev. Sci. Instrum. 28, 793-797 (1957).

D. McLachlan Jr., "The role of optics in applying correlation functions to pattern recognition," J. Opt. Soc. Am. 52, 454-459 (1962).

J. Tanida and Y. Ichioka, "Optical logic array processor using shadowgrams," J. Opt. Soc. Am. 73, 800-809 (1983).

M. A. Monahan, K. Bromley and R.P. Bocker, "Incoherent optical correlators," Proc. IEEE, 65, no. 1, pp. 121-129 (1977).

K. Bromley, "An optical incoherent correlator," Opt. Acta, 21, 35-41 (1974).

A. VanderLugt, "Signal detection by complex spatial filtering," IEEE Trans. Inf. Theory, IT-10, 139-145 (1964).

C. S. Weaver and J. W. Goodman, "A technique for optically convolving two functions," Appl. Opt. 5, 1248-1249 (1966).

J. E. Rau, "Detection of differences in real distributions," J. Opt. Soc. Am. 56, 1490-1494 (1966).

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