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Dive into the research topics where William Larry Wilson is active.

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Featured researches published by William Larry Wilson.


Optics Letters | 1998

Holographic storage of multiple high-capacity digital data pages in thick photopolymer systems.

Lisa Dhar; Kevin Richard Curtis; Michael C. Tackitt; Marcia Lea Schilling; Scott Patrick Campbell; William Larry Wilson; Adrian Hill; Carol Boyd; N. J. Levinos; Alexander Lowe Harris

Multiple digital data pages (480 kbits per page) were holographically recorded and retrieved with low bit-error rates in thick (~250- and ~500-mum) photopolymer media. The photopolymer systems were fabricated with the optical quality and low level of scatter required for digital data storage. We believe that these results represent the first demonstration of holographic storage of high-capacity digital data pages in photopolymer media with the thickness that will be required for such storage densities.


Optical and Quantum Electronics | 2000

High density, high performance optical data storage via volume holography: Viability at last?

William Larry Wilson; Kevin Richard Curtis; Michael C. Tackitt; Adrian Hill; Arturo Hale; Marcia Lea Schilling; Carol Boyd; Scott Patrick Campbell; Lisa Dhar; Alexander Lowe Harris

The long held promise of using volume holography to deliver high performance optical storage is reviewed. The problems, which limited the development for many years, are accessed. Finally, we describe a series of innovations, which may make the technology viable at last.


SPIE's International Symposium on Optical Science, Engineering, and Instrumentation | 1998

Digital holographic data storage in photopolymer systems

Lisa Dhar; Kevin Richard Curtis; Marcia Lea Schilling; Melinda Schnoes; Michael C. Tackitt; Scott Patrick Campbell; William Larry Wilson; Adrian Hill

We report on the holographic storage and recovery of multiple high capacity (800 X 600, 480 kbit) data pages in 250 micrometer and 500 micrometer thick photopolymer media. The data pages were recovered with raw bit error rates less than 5 X 10-3, the level correctable by current error correction strategies. Our results demonstrate that photopolymer systems can be fabricated with the optical quality and low level of scatter required for digital data storage.


Optical data storage '98. Conference | 1998

Photopolymer media for digital holographic data storage

Lisa Dhar; Marcia Lea Schilling; Melinda Schnoes; Kevin Richard Curtis; Michael C. Tackitt; William Larry Wilson

We report on the holographic storage of multiple digital data pages in photopolymer media. The results demonstrate the potential of these materials for high density data storage.


Archive | 1995

Phase correlation multiplex holography

Kevin Richard Curtis; William Larry Wilson


Journal of the American Chemical Society | 1994

Chromophore Structure, Second Harmonic Generation, and Orientational Order in Zirconium Phosphonate/Phosphate Self-Assembled Multilayers

Howard E. Katz; William Larry Wilson; Geoffrey R. Scheller


Journal of the American Chemical Society | 1992

Synthesis, self-assembly, and photophysical dynamics of stacked layers of porphyrin and viologen phosphonates

Solomon B. Ungashe; William Larry Wilson; Howard E. Katz; Geoffrey R. Scheller; T. M. Putvinski


Archive | 1996

Holographic process and media therefor

Vicki L. Colvin; Kevin Richard Curtis; Alexander Lowe Harris; Howard E. Katz; Marcia Lea Schilling; William Larry Wilson


Journal of the American Chemical Society | 1994

SYNTHESIS, LAYER ASSEMBLY, AND FLUORESCENCE DYNAMICS OF POLY(PHENYLENEVINYLENE) OLIGOMER PHOSPHONATES

Howard E. Katz; Stacey F. Bent; William Larry Wilson; Marcia Lea Schilling; Solomon B. Ungashe


Archive | 1999

Process for holography using reference beam having correlated phase content

Kevin Richard Curtis; Peter B. Littlewood; Partha P. Mitra; William Larry Wilson

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Howard E. Katz

Johns Hopkins University

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