List of Recent Publications - 1993-1998
-
H.M. Ozaktas and D. Mendlovic, "Multi-stage optical implementation architecture
with least possible growth of system size", Opt. Lett., 18,
296-298 (1993).
-
D. Mendlovic "3-D image sensing with a zone plate array", Opt. Commun.,
95,
26-32 (1993).
-
H. Inbar, D. Mendlovic and E. Marom, "Error diffusion joint transform correlator",
Appl.
Opt., 32, 707-714 (1993).
-
H.M. Ozaktas and D. Mendlovic, "Fourier transforms of fractional order
and their optical interpretation", Opt. Commun., 101, 163-169
(1993).
-
D. Mendlovic and H.M. Ozaktas, "Optical coordinate transformation methods
and optical interconnection architectures", Appl. Opt., 32,
5119-5124 (1993).
-
D. Mendlovic and H.M. Ozaktas, "Fractional Fourier transforms and their
optical implementation -part I", JOSA, A10, 1875-1881 (1993).
-
D. Mendlovic and N. Konforti, "Optical realization of wavelet transform
for 2-D objects", Appl. Opt., 32, 6542-6546 (1993).
-
H.M. Ozaktas and D. Mendlovic, "Fractional Fourier transform and their
optical implementation - part II", JOSA, A10 2522-2531 (1993).
-
A. Moya, E. Tajahuerce, J. Garcia, D. Mendlovic and C. Ferreira, "Method
for determining the proper expansion center and order for Mellin radial
harmonic filters", Opt. Commun. , 103, 39-45 (1993).
-
A.L ohmann and D. Mendlovic, "Image formation of a self Fourier object",
Appl.
Opt., 33, 153- 157 (1994).
-
D. Mendlovic, H.M. Ozaktas and A. W. Lohmann, "Self Fourier functions and
fractional Fourier transforms", Opt. Comm., 105, 36-38 (1994).
-
H.M. Ozaktas, B. Barshan, D. Mendlovic and L. Onural, "Convolution, filtering,
and multiplexing in fractional Fourier domain and their relation to chirp
and wavelet", JOSA, A11, 547-559 (1994).
-
D. Mendlovic, Z. Zalevsky, J. Garcia and C. G. Ferreira, "Logarithmic harmonics
proper expansion center and order for efficient projection invariant pattern
recognition", Opt. Comm., 107, 292-299 (1994).
-
D. Mendlovic, H.M. Ozaktas and A. W. Lohmann, "Graded index fibers, Wigner
distribution functions and fractional Fourier transform", Appl. Opt.,
33,
6188-6193 (1994).
-
A. Lohmann and D. Mendlovic, "Fractional Fourier transform: Photonic implementation",
Appl.
Opt., 33, 7661-7664 (1994).
-
H.M. Ozaktas and D. Mendlovic, "The fractional Fourier transform as a tool
for analyzing beam propagation and spherical mirror resonators", Opt.
Lett., 19, 1678-1680 (1994).
-
R.G. Dorsch, A.W. Lohmann, D. Mendlovic, Y. Bitran and H.M. Ozaktas, "Chirp
filtering in the fractional Fourier domain", Appl. Opt., 34,
303-309 (1995).
-
D. Mendlovic, Z. Zalevsky and N. Konforti, "Joint transform correlator
with incoherent output", JOSA, A11, 3201-3205 (1994).
-
M. Ozaktas, B. Barshan and D. Mendlovic, "Convolution and filtering in
the fractional Fourier domains", Optical Review, 1, 15-16
(1994).
-
D. Mendlovic, H.M. Ozaktas and A. W. Lohmann, "Fractional correlation",
Appl.
Opt., 34, 303-309 (1995).
-
H.M. Ozaktas, B. Barshan, David Mendlovic and H. Urey, "Space-variant filtering
in fractional Fourier domain", Ins. Phys. Conf. Ser. 139: Part III, 285-288
(1995).
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D. Mendlovic, Z. Zalevsky, I. Kiryuschev and G. Lebreton, "Composite harmonic
filters for scale, projection and shift invariant pattern recognition",
Appl.
Opt., 34, 310-316 (1995).
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H.M. Ozaktas and D. Mendlovic, "Fractional Fourier optics", JOSA,
A12,
743-751 (1995).
-
Y. Bitran, D. Mendlovic, R. G. Dorsch, A. W. Lohmann and H.M. Ozaktas,
"Fractional Fourier transform -- Simulations and experimental results",
Appl.
Opt., 34, 1329-1332 (1995).
-
Z. Zalevsky and D. Mendlovic, "Optical implementation of the Bode transform",
Appl.
Opt., 34, 828-831 (1995).
-
Z. Zalevsky and D. Mendlovic, "Polynomial expansion for shift and projection
or scale, coherent and incoherent, invariant pattern recognition", Appl.
Opt., 34, 5146-5152 (1995).
-
D. Mendlovic, O. Melamed and H. Ozaktas, "Compact optical temporal processor",
Appl.
Opt., 34, 4113-4118 (1995).
-
D. Mendlovic, Y. Bitran, C. Ferreira, J. Garcia and H.M. Ozaktas, "Anamorphic
fractional Fourier transforming - optical implementation and applications",
Appl.
Opt., 34, 7451-7456 (1995).
-
D. Mendlovic and I. Kiryuschev, "Two channels computer generated hologram
and its application for optical correlation", Opt. Comm., 116,
322-325 (1995).
-
D. Mendlovic and N. Avishay, "Three dimensional shape recognition using
computer generated holograms and temporal light in flight technique", Appl.
Opt., 34, 6621-6625 (1995).
-
D. Mendlovic, Y. Bitran, R. G. Dorsch and A. W. Lohmann, "Fractional correlation
-- experimental results", JOSA, A12, 1665-1668 (1995).
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D. Mendlovic, Z. Zalevsky, N. Konforti, R. Dorsch and A. Lohmann, "Incoherent
fractional Fourier transform and its optical implementation", Appl.
Opt., 34, 7615-7620 (1995).
-
D. Mendlovic, P. Garcia, J. Garcia, and C. Ferreira, "Color encoding for
polychromatic single channel optical pattern recognition", Appl. Opt.,
34,
7538-7544 (1995).
-
D. Mendlovic and O. Melamed, "The grating triplet", Appl. Opt.,
34,
7807-7814 (1995).
-
. D. Mendlovic, I. Ouzieli, I. Kiryuschev and E. Marom, "A 2-D wavelet
transform achieved by computer generated multireference matched filter
and Dammann grating", Appl. Opt., 34, 8213- (1995).
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D. Mendlovic, Z. Zalevsky, R. Dorsch, Y. Bitran, A. Lohmann and H. Ozaktas,
"New signal representation based on the fractional Fourier transform: Definitions",
JOSA,
A12,
2424-2431 (1995).
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A. Sahin, H. Ozaktas and D. Mendlovic, "Optical implementation of the two-dimensional
fractional Fourier transform with different orders in the two dimensions",
Opt.
Comm., 120, 134-138 (1995).
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Y. Bitran, Z. Zalevsky, D. Mendlovic and R. Dorsch, "Fractional correlation
operation: Performance analysis", Appl. Opt., 35, 297-303
(1996).
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A.W. Lohmann, D. Mendlovic and Z. Zalevsky, "Fractional Hilbert transform",
Opt.
Lett., 21, 281-283 (1996).
-
D. Marom and D. Mendlovic, " Compact, all-optical, bypass exchange switch",
Appl.
Opt., 35, 248-253 (1996).
-
D. Marom and D. Mendlovic, "All-optical reduced state 4 ´ 4 switch",
Optics
and Photonics News, 7, 43 (1996).
-
D. Mendlovic, "Double multiplexed computer generated holograms", Appl.
Opt., (accepted for publication).
-
Z. Zalevsky, I. Ouzieli and D. Mendlovic, "Wavelet transform based composite
filters for invariant pattern recognition", Appl. Opt., 35,
3141-3147 (1996).
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A.W. Lohmann, R.G. Dorsch, D. Mendlovic, Z. Zalevsky and C. Ferreira, "Space
bandwidth product of optical signal and systems", JOSA, A13,
470-473 (1996).
-
M.F. Erden, H.M. Ozaktas and D. Mendlovic, "Synthesis of mutual intensity
distribution using the fractional Fourier transform", Opt. Comm.,
125,
288-301 (1996).
-
M.F. Erden, H.M. Ozaktas, and D. Mendlovic, "Propagation of mutual intensity
expressed in terms of the fractional Fourier transform", JOSA, A13,
1068-1071 (1996).
-
A.W. Lohmann, D. Mendlovic, Z. Zalevsky and R.G. Dorsch, "Some important
fractional transformations for signal processing", Opt. Commun.,
125,
18-20 (1996).
-
Z. Zalevsky, D. Mendlovic and R. Dorsch, "The Gerchberg - Saxton algorithm
applied in the fractional Fourier or the Fresnel domains", Opt. Lett.,
21,
842-844 (1996).
-
D. Mendlovic, R.G. Dorsch, A. W. Lohmann, Z. Zalevsky and C. Ferreira,
"Optical illustration of a varied fractional Fourier transform order and
the Radon-Wigner Transform", Appl. Opt., 35, 3925-3929 (1996).
-
D. Mendlovic, Z. Zalevsky, A. W. Lohmann, and R. Dorsch, "Signal spatial
filtering using the localized fractional Fourier transform", Opt. Comm.,
126,
14-18 (1996).
-
Z. Zalevsky and D. Mendlovic, "Fractional Wiener filter", Appl. Opt.,
35,
3930-3936 (1996).
-
Z. Zalevsky and D. Mendlovic, "The fractional Radon transform - definition
and applications", Appl. Opt., 35, 4628-4631 (1996).
-
D. Mendlovic, A. W. Lohmann and Z. Zalevsky, "SW- adaptation and its application
for super resolution - Examples", JOSA, A14, 563-567 (1997).
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J. Garcia, D. Mendlovic, Z. Zalevsky and A. Lohmann, "Space variant simultaneous
detection of several objects using multiple anamorphic fractional Fourier
transform filters", Appl. Opt., 35, 3945-3952 (1996).
-
A.W. Lohmann, Z. Zalevsky and D. Mendlovic, "Synthesis of pattern recognition
filters for fractional Fourier processing", Opt. Comm., 128,
199-204 (1996).
-
J. Garcia, Z. Zalevsky and D. Mendlovic, "Two dimensional wavelet transform
by wavelength multiplexing", Appl. Opt., 35, 7019-7023 (1996).
-
A. Moya, D. Mendlovic, J. Garcia and C. Ferreira, "Projection invariant
pattern recognition using phase-only logarithmic harmonic derived filter",
Appl.
Opt., 35, 3862-3867 (1996).
-
I. Ouzieli and D. Mendlovic, "A 2-D Wavelet processor", Appl. Opt.,
35,
5839-5846 (1996).
-
D. Mendlovic, M. Deutsch, C. Ferreira and J. Garcia, "Single - channel
polychromatic pattern recognition using a joint transform correlator",
Appl.
Opt., 35, 6382-6389 (1996).
-
M. Deutsch, J. Garcia and D. Mendlovic,
"Multi-channel single-output color pattern recognition using a joint transform
correlator," Appl. Opt., 35, 6976-6982 (1996).
-
D. Mendlovic, Z. Zalevsky, G. Shabtay and E. Marom, "High efficiency arbitrary
array generator", Appl. Opt., 35, 6875-6880 (1996).
-
Z. Zalevsky and D. Mendlovic, "Light Propagation analysis in Graded Index
Fiber-Review and Applications", Fiber and integrated optics, 16,
55-61 (1997).
-
D. Mendlovic and A. W. Lohmann, ""SW - adaptation" and its application
for super resolution - Fundamentals", JOSA, A14, 558-562
(1997).
-
D. Mendlovic, Z. Zalevsky and N. Konforti, "Computation considerations
and fast algorithms for calculating the diffraction integral", J. of
Modern Optics, 44, 407-414 (1997).
-
Z. Zalevsky, D. Mendlovic and J. H. Caulfield, "Localized, partially space
invariant filtering", Appl. Opt., 36, 1086-1092 (1997).
-
D. Mendlovic, A. W. Lohmann, N. Konforti, I. Kiryuschev and Z. Zalevsky,
"One dimensional super resolution optical system for temporally restricted
objects", Appl. Opt., (accepted).
-
. Z. Zalevsky, D. Mendlovic and J. Garcia, "Invariant pattern recognition
by use of wavelength multiplexing", Appl. Opt., 36, 1059-1063
(1997).
-
G. Shabtay, Z. Zalevsky, D. Mendlovic I. Raveh, J. Garcia and C. Ferreira,
"Invariant pattern recognition based on 1-D wavelet functions and the polynomial
decomposition", Opt. Comm., 136, 306-312 (1997).
-
Z. Zalevsky, D. Mendlovic and G. Shabtay, "Optical transfer function design
using coherent transfer function", Appl. Opt., 36, 1027-1032
(1997).
-
M. Fatin Erden, H. Ozaktas, A. Sahin and D. Mendlovic, "Design of dynamically
adjustable anamorphic fractional Fourier transformer", Opt. Comm.,
136,
52-60 (1997).
-
Z. Zalevsky, I. Raveh, G. Shabtay, D.
Mendlovic and J. Garcia, “Single output, color pattern recognition using
a fractional Fourier transform,” Opt. Eng., 36, 2127-2136
(1997)
-
D. Mendlovic, A. Lohmann, D. Mas and
G. Shabtay, “Opto-electronic implementation of the triple correlation,”
Opt.
Lett., 22, 1018-1020 (1997))
-
D. Mendlovic, Z. Zalevsky, D. Mas, J.
Garcia and C. Ferreira, “The fractional wavelet transform,” Appl. Opt.,36,
4801-4806 (1997).
-
A. Lohmann, D. Mendlovic and Z. Zalevsky,
“A digital method for measuring the focus error,” Appl. Opt. (accepted
for publication).
-
D. Marom and D. Mendlovic, "Comment
on a new routing algorithm for a class of rearrangeable networks," IEEE
Trans. on Computers, 46, 734 (1997)
-
A. Lohmann and D. Mendlovic, "The fractional
joint correlator," Appl. Opt., 36, 7406-7407 (1997)
-
D. Mendlovic and Z. Zalevsky, "Definition
and properties of the generalized temporal-spatial Wigner distribution
function," Optik, 107, 49-61 (1997)
-
D. Mendlovic, I. Kiryuschev, Z. Zalevsky,
A. Lohmann and D. Farkas, “Two dimensional super resolution optical system
for temporally restricted objects,” Appl. Opt,. 36, 6687-6691
(1997)
-
D. Mendlovic, G. Shabtay, U. Levi, Z.
Zalevsky and E. Marom, “Encoding technique for the design of zero order
(on axis) Fraunhofer computer generated holograms,” Appl. Opt.,36,
8427-8434 (1997)
-
A. Lohmann, D. Mendlovic and G. Shabtay,
“About the significance of phase and amplitude in the Fourier domain,”
JOSA,
A14, 2901-2904 (1997).
-
D. Mendlovic and E. Gur, “Three dimensional
sensing using lenslet, Dammann grating and a combination,” Appl. Opt.,
(accepted for publication).)
-
D. Mendlovic, J. Garcia, Z. Zalevsky
E. Marom, D. Mas, C. Ferreira and A. W. Lohmann, “Wavelength multiplexing
system for a single-mode image transmission,” Appl. Opt., 36,
8474-8480 (1997).
-
D. Mendlovic, Z. Zalevsky and A. Lohmann,
“Various approaches in super resolution,” Optics and Photonics News,
Optics in 1997 Edition, 21-22 (1997).
-
Z. Zalevsky, D. Mendlovic and J. H,
Caulfied, "Fractional correlator with real time control of space invariant
property," Appl. Opt.,. 36, 2370-2375 (1997).
-
A. W. Lohmann, Z. Zalevsky, R. G. Dorsch,
and D. Mendlovic “Experimental considerations and scaling property of the
fractional Fourier transform,” Opt. Commun., 146, 55-61 (1998).
-
I. Gur and D. Mendlovic, “Diffraction
limited top-hat generator,” Opt. Commun., 145, 237-248 (1998).
-
A. Lohmann, D. Mendlovic, Z. Zalevsky
and G. Shabtay, “The use of Ewald’s surfaces in triple correlation optics,”
Opt.
Commun., 144, 170-172 (1998).
-
D. Mendlovic, “A continuous two dimensional
on axis Wavelet transformer and Wavelet processor with white light illumination,”
37, 1279-1282 (1998).
-
D. Mendlovic, D. Mas, A. Lohmann, Z.
Zalevsky and G. Shabtay, “Fractional triple correlation and its applications
for pattern recognition and noise removal,” Appl. Opt., 15,
1658-1661 (1998).
-
D. Mendlovic, D. Farkas, Z. Zalevsky
and A. Lohmann, “High frequency enhancement via super resolution optical
system for temporally restricted objects,” Opt. Lett., 23,
801-803 (1998).
-
Z. Zalevsky, D. Mendlovic and A. Lohmann,
“The ABCD Bessel transformation,” Opt. Commun., (accepted for publication).
-
Z. Zalevsky, D. Mendlovic and H. Ozaktas,
“Synthesis of mutual intensity distribution using a phase only filtering
in the fractional Fourier domain,” JOSA A, (accepted for publication).
-
A. Sahin, H. Ozaktas and D. Mendlovic,
"Synthesis of general linear systems with repeated filtering in constructive
fractional Fourier domains,” JOSA A, (accepted).
-
U. Levi, E. Marom and D. Mendlovic,
“Modifications of detour phase computer generated holograms,” Appl.
Opt.,37, 3044-3052 (1998).
-
U. Levi, D. Mendlovic and Z. Zalevsky,
“On axis phase only computer generated holograms based on minimal etching
process,” J. of Modern Optics, 45, 1437-1449 (1998).
-
G. Shabtay, D. Mendlovic and Z. Zalevsky,
“A proposal for optical implementation of the Wigner distribution function,”
Appl.
Opt., 37, 2142-2144 (1998).
-
G. Shabtay, D. Mendlovic and Z. Zalevsky,
“Optical implementation of the continuous wavelet transform,” Appl.
Opt.,37, 2964-2966 (1998).
-
A. Lohmann, D. Mendlovic and G. Shabtay,
“Talbot (1836), Montgomery (1967), Lau (1948), Wolf (1995) on periodicity
in optics,” Pure and Applied Optics, J. of the Europian Optical Society
, – Part A 7, 1-4 (1998).
-
D. Mendlovic, G. Shabtay, A. Lohmann
and N. Konforti, “Display of spatial coherence,” Opt. Lett., 23,
1084-1086 (1998).
-
A. Sahin, H. Ozaktas and D. Mendlovic,
“Optical implementation of two-dimensional fractional Fourier transforms
and linear canonical transforms with arbitrary parameters,” Appl. Opt.,37,
2130-2141 (1998).
-
K. B. Wolf, D. Mendlovic and Z. Zalevsky,
“Generalized Wigner function for the analysis of superresolution systems,”
Appl.
Opt., 37, 4374-4379 (1998).
-
D. Marom, N. Konforti and D. Mendlovic,
“All-optical stage of an Omega netwoek,” Appl. Opt., 37,
6946-6950 (1998).
-
A. Lohmann, D. Mendlovic and Z. Zalevsky,
“ Fourier optics of the triple correlation,” Opt. Commun. 152, 243-246
(1998).
-
E. Gur, D. Mendlovic and Z. Zalevsky,
"Optical implementation of fuzzy logic controller: Part I," Appl. Opt.,37,
6937-6945 (1998).
-
U. Levi, David Mendlovic and Z. Zalevsky,
“On axis phase only computer generated holograms based on a minimal etching
process,” JMO, 45, 7, 1437-1449 (1998).
-
N. Cohen, D. Mendlovic, B. Liebner and
N. Konforti, “Compact polarization based all-optical interconnection systems
with growth capability,” Appl. Opt,. 37, 5479-5487 (1998).
-
A. Lohmann, D. Mendlovic and G. Shabtay,
“Coherence wave,” JOSA A (accepted for publication).
-
D. Mendlovic and Z. Zalevsky, “A novel
device for achieving negative or positive dispersion and its application
for temporal pulse compression,” Optik, (accepted for publication).
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