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Convolution, filtering, and multiplexing in fractional Fourier domains and their relation to chirp and wavelet transforms
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IEEE, Piscataway, N.J
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M. A. Kutay, H. M. Ozaktas, L. Onural, and O. Arikan, “Optimal filtering in fractional Fourier domains, ” in Proceedings of the International Conference on Acoustics, Speech, and Signal Processing (IEEE, Piscataway, N.J., 1995), pp. 937–940.
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Synthesis of mutual intensity distributions using the fractional Fourier transform
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M. F. Erden, M. A. Kutay, and H. M. Ozaktas, “Repeated filtering in consecutive fractional Fourier domains and its application to signal restoration, ” IEEE Trans. Signal Process. (to be published).
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IEEE Trans. Signal Process.
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Multistage optical interconnection architectures with the least possible growth of system size
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D. Mendlovic and H. M. Ozaktas, “Fractional Fourier transforms and their optical implementation. I, ” J. Opt. Soc. Am. A 10, 1875–1881 (1993).
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Relationships among ray optical, Gaussian beam, and fractional Fourier transform descriptions of first-order optical systems
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Optical implementation of the two-dimensional fractional Fourier transform with different orders in the two dimensions
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Signal spatial-filtering using the localized fractional Fourier transform
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Space-variant simultaneous detection of several objects by the use of multiple anamorphic fractional-Fourier-transform filters
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0029230951
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Synthesis of pattern recognition filters for fractional Fourier processing
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A. W. Lohmann, Z. Zalevsky, and D. Mendlovic, “Synthesis of pattern recognition filters for fractional Fourier processing, ” Opt. Commun. 128, 199–204 (1996).
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A. Sahin, “Two-dimensional fractional Fourier transform and its optical implementation, ” M.S. thesis (Bilkent University, Department of Electrical and Electronics Engineering, Ankara, Turkey, 1996).
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Optical-coordinate transformation methods and optical-interconnection architectures
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