C.O. Bozler, C.T. Harris, S. Rabe, D.D. Rathman, M.A. Hollis, and H.I. Smith, “Arrays of gated field-emitter cones having 0.32 um tip-to-tip spacing”, J. Vac Sci. Technol. B 12(2), Mar./Apr. 1994, pp. 629-632. |
C.A. Spindt, “Field Emitter Arrays for Vacuum Microelectronics”, IEEE Transactions On Electron Devices, vol. 38, No. 10, Oct. 1991, pp. 2355-2363. |
Z. Huang, N.E. McGruer, and K. Warner, “200 nm Gated Field Emitters”, IEEE Electron Device Letters, vol. 14, No. 3, Mar. 1993. |
J.W. Goodman, Introduction to Fourier Optics, McGraw-Hill, San Fran., 1968. |
C.G. Bernhard, “Structural and functional adaptation in a visual system.”, Endeavor, 26, pp. 79-84, 1967. |
P.B. Clapham and M.C. Hutley, “Reduction of lens reflexion by the ‘Moth Eye’ principle”, Nature, 244, pp. 281-282, Aug. 3, 1973. |
M.C. Hutley & S.J. Wilson, “The optical properties of ‘moth-eye’ antireflection surfaces”, Optica Acta, vol. 29, No. 7, pp. 993-1009, 1982. |
W.H. Southwell, “Pyramid-array surface relief structures producing antireflection index matching on optical surfaces”, JOSA A, vol. 8, No. 3, 549-553, Mar. 1991. |
J.F. DeNatale et. al., “Fabrication and characterization of diamond moth eye antireflection surfaces on Ge”, J. Appl. Phys., 71,(3), pp. 1388-1393, Feb. 1, 1992. |
A.B. Harker and J.F. DeNatale, “Diamond gradient index ‘moth eye’ antireflection surfaces for LWIR windows”, SPIE vol. 1760, Window and Dome Technologies and Materials III, pp. 261-267, Jul. 1992. |
Murakami, T., Togari, H., & Steinman, A., “Electrostatic problems and ionization solutions in TFT-LCD production”, Solid State Technology, Jan. 1997, pp. 99-102. |
Hatoh, H., et al., “Dependence of pretilt angle on the topography of substrate in liquid crystal alignment brought about by rubbing technique”, Appl. Phys. Lett., 64, (9), pp. 1103-1104, Feb. 28, 1994. |
Coherent laser company specifications, Innova argon-ion laser lifetime data, 1997. |
J.J. Cowan, “Holographic honeycomb microlens”, Optical Engineering, vol. 24, No. 5, Sep./Oct. 1985, pp. 796-802. |
Dammann, H., and Klotz, E., Optica Acta, 1977, vol. 24 pp. 505-515 Coherent Optical Generation and Inspection of Two-Dimensional Periodic Structures. |
Leith, E.N., Hershey R.R., and Chen, H.S., “Techniques for high quality fringe generation”, SPIE vol. 1211, Computer and Optically Formed Holographic Optics (1990) pp. 158-165. |
K. Derbyshire, “Beyond AMLCDs: Field Emission Displays?”, Solid State Technology, Nov. 1994, pp. 55-63. |
G.P. Bryan-Brown, et.al., “Grating Aligned Bistable Nematic Device”, SID 97 Symposium Digest vol. XXVIII, May 11-16, 1997, pp. 37-40. |
J.P. Ryan and M. Steinberg, WDM and Optical Networks: Market Directions, Optics and Photonics News, OSA, Feb. 1998, p. 25. |
M.L. Schattenburg, H.I. Smith, et. al., “Fabrication of high energy x-ray transmission gratings for AXAF”, SPIE Proceedings 2280, San Diego, CA Jul. 24-29, 1994. |
J. Ferrera, M.L. Schattenburg, H.I. Smith, “Analysis of distortion in interferometric lithography”, J. Vac. Sci. Technol. B, 14(6), p. 4009, Nov./Dec. 1996. |
H. Hock, C. King, and J. Helbert, “Resist Image Reversal for Next-generation VLSI Circuit Fabrication”, Semiconductor International, Sep. 1987, pp. 164-168. |
M. Long & J. Newman, “Image Reversal Techniques with Standard Positive Photoresist”, SPIE Proceedings, vol. 469, Advances in Resist Technology, 1984, p. 189. |
C. Hartglass, “Optimization of Image Reversal of Positive Photoresist”, Proceedings of Kodk Interface, 1985. |
Shank et al., “Optical Technique for producing 0.1 um periodic structures”, Applied Physics Letters, vol. 23, No. 3, Aug. 1973. |