Geoffrey W. Burr, Matthew J. Breitwisch, et al.
Journal of Vacuum Science and Technology B
We discuss thermal fixing as a solution to the volatility problem in holographic storage systems that use photorefractive materials such as LiNbO3. We present a systematic study to characterize the effect of thermal fixing on the error performance of a large–scale holographic memory. We introduce a novel, to our knowledge, incremental fixing schedule to improve the overall system fixing efficiency. We thermally fixed 10,000 holograms in a 90°–geometry setup by using this new schedule. All the fixed holograms were retrieved with no errors. © 1999 Optical Society of America.
Geoffrey W. Burr, Matthew J. Breitwisch, et al.
Journal of Vacuum Science and Technology B
Todd L. Harris, Mingzhen Tian, et al.
Journal of the Optical Society of America B: Optical Physics
Geoffrey W. Burr, Erwin Mecher, et al.
Proceedings of SPIE - The International Society for Optical Engineering
Geoffrey W. Burr, Pierre Tchoulfian, et al.
Journal of Applied Physics