C.N. Kurtz, Transmittance Characteristics of Surface Diffusers and the Design of Nearly Band-Limited Binary Diffusers, Journal of the Optical Society of America, vol. 62, No. 8, pp. 982-989, 1972. |
C.N. Kurtz, H.O. Hoadley, and J.J. DePalma, Design and synthesis of random phase diffusers, Journal of the Optical Society of America, vol. 63, No. 9, pp. 1080-1092, 1973. |
Nicholas George and Atul Jain, Space and Wavelength Dependence of Speckle Intensity, Applied Physics, vol. 4, pp. 201-212, 1974. |
Nicholas George, Atul Jain, and R.D.S. Melville, Jr., Experiments on the Space and Wavelength Dependence of Speckle, Applied Physics, vol. 7, pp. 157-169, 1975. |
Karen J. Allardyce and Nicholas George, Diffraction analysis of rough reflective surfaces, Applied Optics, vol. 26, No. 12, pp. 2364-2375, 1987. |
Lyle G. Shirley and Nicholas George, Diffuser radiation patterns over a large dynamic range. 1: Strong diffusers, Applied Optics, vol. 27, No. 9, pp. 1850-1861, 1988. |
Nicholas George, Speckle at various planes in an optical system, Optical Engineering, vol. 25, No. 6, pp. 754-764, 1986. |
Lyle G. Shirley and Nicholas George, Wide-angle diffuser transmission functions and far-zone speckle, Journal of the Optical Society of America A, vol. 4, No. 4, pp. 734-745, 1987. |
E.W. Marchand, Diffraction effects with lenticular projection screens, Journal of the Optical Society of America, vol. 65, No. 2, pp. 139-145, 1975. |
Michael D. Kirkpatrick and George Mihalakis, Projection Screens for High Definition Television, In Large-Screen-Projection, Avionic, and Helmet-Mounted Displays, SPIE vol. 1456, pp. 40-47, 1991. |
Ralph Bradley, Jr. et al., Ultra-wide viewing angle rear projection television screen, IEEE Transactions on Consumer Electronics, vol. CE-31, No. 3, pp. 185-193, 1985. |
Karl M. Jauch & H.P. Baltes, Coherence of radiation scattered by gratings covered by a diffuser Experimental evidence, Optica Acta, vol. 28, No. 8, pp. 1013-1015, 1981. |
H.P. Baltes and A.M.J. Huiser, Coherent and incoherent grating reconstruction, Journal of the Optical Society of America, vol. 3, No. 8, pp. 1268-1275, 1986. |
D. Newman and J.C. Dainty, Detection of gratings hidden by diffusers using intensity interferometry, Journal of the Optical Society of America, vol. 1, No. 4, pp. 403-411, 1984. |
Henry P. Baltes, Speckle correlation and the detection of phase gratings hidden by diffusers, SPIE vol. 556 International Conference on Speckle, pp. 223-226, 1985. |
E. Simova and M. Kavehrad, Light Shaping Diffusers for Indoor Wireless Infrared Communications via a Holographic Approach, Diffractive and Holographic Optics Technology III, I. Cindrich and S.H. Lee, ed., SPIE vol. 2689, pp. 284-291, 1996. |
P.C. Clemmow, The Plane Wave Spectrum Representation of Elecromagnetic Fields, Pergamon Press, New York, pp. 11-38, 1966. |
M.J. Beesley and J.G. Castledine, The Use of Photoresist as a Holographic Recording Medium, Applied Optics, vol. 9, No. 12, pp. 2720-2724, 1970. |
R.A. Bartolini, Characteristics of Relief Phase Holograms Recorded in Photoresists, Applied Optics, vol. 13, No. 1, pp. 129-139, 1974. |
Stewart Austin and F.T. Stone, Fabrication of thin periodic structures in photoresist: a model, Applied Optics, vol. 15, No. 4, pp. 1071-1074, 1976. |
R.C. Enger and S.K. Case, High-frequency holographic transmission gratings in photoresist, Journal of the Optical Society of America, vol. 73, No. 9, pp. 1113-1118, 1983. |
Sten Lindau, Controlling the Grove Depth of Holographic Gratings, Optical System Design, Analysis, and Production, P.J. Rogers and R.E. Fischer, eds., Proc. SPIE 399, pp. 323-328, 1983. |
Miroslav Miler, Photoresist as a recording material for holographic elements, SPIE vol. 2108, pp. 2-8, 1993. |
Lyle Gordon Shirley, Laser speckle from thin and cascaded diffusers, Ph.D. Thesis University of Rochester, The Institute of Optics, 1988. |