Charge–carrier diffusion length in photorefractive crystals computed from the initial hologram phase shift
Author:
Publisher
AIP Publishing
Subject
Physics and Astronomy (miscellaneous)
Link
http://aip.scitation.org/doi/pdf/10.1063/1.120116
Reference23 articles.
1. Transport processes of photoinduced carriers in Bi12SiO20
2. Transport properties of photoelectrons in Bi12SiO20
3. Optical measurements of charge-carrier mobilities in photorefractive sillenite crystals
4. Experimental comparison of the ac field and the moving-grating holographic-recording techniques for Bi_12SiO_20 and Bi_12TiO_20 photorefractive crystals
5. Phase-conjugating mirror with continuous-wave gain
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1. Bibliography;Photorefractive Materials for Dynamic Optical Recording;2020-01-10
2. Novel procedure for the simultaneous determination of the Debye length and electro-optic coefficient for an optically active photorefractive Bi12SiO20 crystal;Optics Communications;2011-01
3. Formal demonstration of the independence on the optical activity of the maximum gain position in a two-wave coupling experiment;Photonics Letters of Poland;2010-12-30
4. An improved procedure for fringe-locked photorefractive running hologram data processing;Journal of Optics A: Pure and Applied Optics;2009-01-07
5. Characterization of photorefractive undoped and doped sillenite crystals using holographic and photoconductivity techniques;Journal of Optics A: Pure and Applied Optics;2008-08-27
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