Anisotropy of nonlinear coupling of two counter-propagating waves in photorefractiveFe:KNbO3
Author:
Publisher
American Physical Society (APS)
Subject
Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.73.174102/fulltext
Reference19 articles.
1. Photorefractive reflection gratings and coupling gain in LiNbO3:Fe
2. High optical gain using counterpropagating beams in iron and terbium-doped photorefractive lithium niobate
3. Non-reciprocal transmission through photorefractive crystals in the transient regime using reflection geometry
4. Photovoltaic contribution to counter-propagating two-beam coupling in photorefractive lithium niobate
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1. Defects and Aliovalent Doping Engineering in Electroceramics;Chemical Reviews;2020-01-03
2. Identification of the specific Fe centers and associated defect structure responsible for enhanced dynamic holography in photorefractiveKNbO3:Fe;Physical Review B;2016-03-10
3. Inorganic–Organic Photorefractive Hybrids;Photorefractive Organic Materials and Applications;2016
4. Recent advances in photorefractive two-beam coupling;Optical Materials;2009-05
5. The effects of the doped Cu on the physical properties of KNbO3 crystal;Chemical Physics Letters;2008-03
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