Behrmann et al., “Influence of temperature on diffractive lens performance,” Appl. Opt., 1993, 32:2483-2489. |
Buralli, D. A., “Optical design with diffractive lenses,” Sinclair Optics Design Notes, V. 2, No. 4, 1991. |
Code V Reference Manual, Version 8.20, Optical Research Associates, Pasadena, California, vol. 1, pp. 2A-433 —2A-434, 1998. |
Grey, D. S., “Athermalization of Optical Systems,” Josa, 1948, 38:542-546. |
Handbook of Optics, 2nd ed ., M. Bass editor, McGraw-Hill, Inc., New York, 1995, vol. I, 32.15-32.16. |
Handbook of Optics, 2nd ed., M. Bass editor, McGraw-Hill, Inc., New York, 1995, vol. II, 8.1-8.19. |
Jamieson, T.H., “Thermal Effects in optical systems,” Opt. Eng., 1981, 20:156-160. |
Johnson et al., “Rigorous Electromagnetic Modeling of Diffractive Optical Elements,” Proceedings SPIE, vol. 1545, 1991, pp. 209-216. |
Kryszcynski et al., “Material problem in athermalization of optical systems,” Opt. Eng., 1997, 36:1596-1601. |
Londono et al., “Athermalization of single-component lens with diffraction optics,” Appl. Opt., 1993, 32:2295-2302. |
Londono, et al., “The design of achromatized hybrid diffractive lens system,” Proceedings SPIE, 1354:30-37, 1990. |
Moharam et al., “Diffraction Analysis of Dielectric Surface-Relief Gratings,” Josa, 72:1385-1392, 1982. |
Oslo Version 5, Optics Reference, Sinclair Optics, Inc., Fairport, New York, pp. 359-361, 1996. |
Sasian-Alvarado et al., “Staircase lens: a binary and diffractive field curvature corrector,” Applied Optics, 1993, vol. 32:60-66. |
Sinclair, D. C., “Designing Diffractive Optics Using The Sweatt Model”, Sinclair Optics Designs Notes, Fairport, New York, vol. 1, No. 1, Winter 1990 |
Southwell, W.H., Ray Tracing Kinoform Lens Surfaces, Applied Optics, 1992, 31:2244-2247. |
Spencer et al., “General Ray-Tracing Procedure,” Josa, 52:672-678, 1962. |
Swanson, G. J., Binary Optics Technology: Theoretical Limits on the Diffractive Efficiency of Multilevel Diffractive Optical Elements, Massachusetts Institute of Technology Lincoln Laboratory, Technical Report 914, Lexington, Massachusetts, Mar. 1, 1991. |
Sweatt, W.C., “Describing Holographic Optical Elements As Lenses,” Josa, V. 67, pp. 803-808, 1977. |
Sweatt, W. C., “Mathematical Equivalence Between A Holographic Optical Element And An Ultra-High Index Lens,” Josa, V. 69, pp. 486-487, 1979. |
Tamagawa et al., “Dual-band optical systems with a project athermal chart: design,” Appl. Opt., 1997, 36:297-301. |
Tudorovskii, A. I., “An Objective with al Phase Plate,” Optics and Spectroscopy, vol. 6(2), pp. 126-133 (Feb. 1959). |
Welford, W. T., “Vector Raytracing Equation For Hologram Lenses of Arbitrary Shape,” Opt. Commun., V. 14, 322-323, 1975. |
Zemax Optical Design Program, User's Guide, Version 7.0, pp. 13-23, Focus Software Inc., Tucson, Arixona, 1998. |
Sweeney et al., “Harmonic diffractive lenses,” Appl. Opt., V. 34 (14), pp. 2469-2475, 1995. |
Faklis et al., “Spectral properties of multiorder diffractive lenses,” Appl. Opt., , V. 34(14), pp. 2462-2468, 1995. |
Londono et al., “Modeling diffraction efficiency effects when designing hybrid diffractive lens systems,” Appl. Opt., V. 31 (13), pp. 2248-2252, 1992. |
Stone et al., “Hybrid diffractive-refractive lenses and achromats, ” Appl. Opt., , V. 27(14), pp. 2960-2971. |
Swanson et al., “Binary lenses for use at 10.6 micrometers,” Opt. Eng., , V. 24 (5), pp. 791-795, 1985. |
Swanson et al., “Diffraction optical elements for use in infrared systems,” Opt. Eng., V. 28 (6), pp. 605-608, 1989. |
Swanson, G. J., “Binary optics technology: the theory and design of multi-level diffractive optical elements,” MIT Lincoln Laboratory Tech. Rep. 854, Lexington, Massachusetts, 1989. |
Welch, H., “Fabrication Issues for DOE Design,” CODE V News Supplement, Summer 1996. |