“Optical Strain Characteristics of Holographically Formed Polymer-Dispersed Liquid Crystal Films”, Cairns et al., Applied Physics Letters, vol. 77, No. 77, pp. 2677-2679, Oct. 23, 2000. |
Berthold et al., “Design and Characterization of a High Temperature Fiber-Optic Pressure Transducer” Journal of Lightwave Technology LT-5:870-876 (Jul. 1987). |
Bock et al., “Fiber-Optic Strain-Gauge Manometer up to 100 MPA” IEEE Transactions on Instrumentation and Measurement 41:72-76 (Feb. 1992). |
Bock et al., “GaAs-Based Fiber-Optic Pressure Sensor” IEEE Transactions on Instrumentation and Measurement 41:68-71 (Feb. 1992). |
Iwamoto et al., “Pressure Sensor Using Optical Fibers” Applied Optics 29:375-378 (Jan. 1990). |
Froggatt et al., “Distributed Measurement of Static Strain in an Optical Fiber with Multiple Bragg Gratings at Nominally Equal Wavelengths” Applied Optics 37:1741-1746 (Apr. 1998). |
Froggatt et al., “High-Spatial-Resolution Distributed Strain Measurement in Optical Fiber with Rayleigh Scatter” Applied Optics 37:1735-1740 (Apr. 1998). |
Singh et al., “Simultaneously Measuring Temperature and Strain Using Optical Fiber Microcavities” Journal of Lightwave Technology 15:647-653 (Apr. 1997). |
Tanaka et al., “Holographically Formed Liquid-Crystal/Polymer Device for Reflective Color Display” Journal of the SID 2/1:37-40 (1994). |
Tanaka et al. “Optimization of Holographic PDLC for Reflective Color Display Applications” SID 95 Digest 18.1:267-270 (1995). |
Weiss, “Fiber-Optic Strain Gauge” Journal of Lightwave Technology 7:1308-1318 (Sep., 1989). |
Bowley et al., “Diffusion Kinetics of Formation of Holographic Polymer-Dispersed Liquid Crystal Display Materials”, Applied Physics Letters. 76:2235 (Apr. 17, 2000). |
Crawford et al., “Reflective Color LCDs Based on H-PDLC and PSCT Technologies,” SID 96 Digest ; 99-102 (1986). |
Bowley et al., “Electro-Optic Investigations of H-PDLCs: The Effect of Monomer Functionality of Display Performance”, SID, '99 Digest of Technical Papers, pp. 958-961, (May, 1999). |
Bowley et al., “Advances in Holographic Polymer Dispersed Liquid Crystal Technology”, Material Research Society, vol. 559 , (May 1999). |
Bunning et al., “The Morphology and Performance of Holographic Transmission Gratings Recorded in Polymer Dispersed Liquid Crystals”, Polymer, vol. 36 No. 14 pp. 2699-2708 (1995). |
Date et al., “Three Primary-Color Holographic Polymer Dispersed Liquid Crystal (HPDLC) Device for Reflective Displays”. |
Fontecchio et al., “Improvement in Holographically-Formed Polymer Dispersed Liquid Crystal Performance Through Acrylated Monomer Functionality Studies” SPIE, vol. 3008, pp. 36-44, (Jul., 1999). |
Kato, et al., “Reflective Liquid Crystal Color Display Technologies”, Electronic and Communications in Japan, Part 2, vol. 81, pp. 127-134, (Mar., 1998). |
Sutherland, et al. “Bragg Gratings in an Acrylate Polymer Consisting of Periodic Polymer-Dispersed Liquid-Crystal Planes” Chem. Mater., 5, pp. 1533-1538 (1993). |
Tanaka, et al., “A Liquid-Crystal/Polymer Optical Device Formed by Holography for Reflective Color Display Applications”, SID International Symposium Digest of Technical Papers, vol. 24, pp. 109-111 (1993). |
Tanaka, et al., “Fabrication of Holographic Polymer Dispersed Liquid Crystal (HPDLC) with High Reflection Efficiency”, Jpn. J. Appl. Phys. vol. 38 pp. L277-L278 (1999). |