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Coupling of orthogonal polarization states in a nonlinear birefringent cavityHO, K. C; INDEBETOUW, G.Applied optics. 1990, Vol 29, Num 2, pp 206-209, issn 0003-6935, 4 p.Article

Beam coupling in photorefractive BaTiO3 crystalsMOTES, A; JIN JOONG KIM.Optics letters. 1987, Vol 12, Num 3, pp 199-201, issn 0146-9592Article

Compact Wideband Corrugated Feedhorns With Ultra-Low Sidelobes for Very High Performance Antennas and Quasi-Optical SystemsMCKAY, Johannes E; ROBERTSON, Duncan A; CRUICKSHANK, Paul A. S et al.IEEE transactions on antennas and propagation. 2013, Vol 61, Num 4, pp 1714-1721, issn 0018-926X, 8 p., 1Article

High photorefractive gain in two-beam coupling with moving fringes in GaAs:Cr crystalsIMBERT, B; RAJBENBACH, H; MALLICK, S et al.Optics letters. 1988, Vol 13, Num 4, pp 327-329, issn 0146-9592Article

Beam energy exchange in sillenite crystals (Bi12SiΟ20 and Bi12TiΟ20), considering the variation of light modulation along sample thickness in a strong non-linear regimeMAGANA, L. F; CASAR, I; MURILLO, J. G et al.Optical materials (Amsterdam). 2008, Vol 30, Num 6, pp 979-986, issn 0925-3467, 8 p.Article

Photorefractive dark conductivity in Cr-doped strontium barium niobateSAYANO, K; RAKULJIC, G. A; AGRANAT, A et al.Optics letters. 1989, Vol 14, Num 9, pp 459-461, issn 0146-9592Article

Influence of the non-uniformity of the grating along sample thickness and of grating period variation, on the diffraction efficiency optimization in a sillenite crystal (Bi12SiO20) in a strong non-linear regime under an external dc fieldGONZALEZ, G; ZUNIGA, A; MAGANA, L. F et al.Optical materials (Amsterdam). 2009, Vol 31, Num 8, pp 1218-1223, issn 0925-3467, 6 p.Article

Dependence of space charge field and gain coefficient on the applied electric field in photorefractive materialsSINGH, Ruchi; MAURYA, M. K; YADAV, T. K et al.Optics and laser technology. 2011, Vol 43, Num 1, pp 95-101, issn 0030-3992, 7 p.Article

Recent advances in photorefractive two-beam couplingEVANS, D. R; COOK, G; SALEH, M. A et al.Optical materials (Amsterdam). 2009, Vol 31, Num 7, pp 1059-1060, issn 0925-3467, 2 p.Conference Paper

Understanding the optical and electrical properties of a new photorefractive potassium niobate crystalEVANS, D. R; COOK, G; CARNS, J. L et al.Journal of luminescence. 2006, Vol 119-20, pp 535-540, issn 0022-2313, 6 p.Conference Paper

Sn2P2S6 crystals for fast near-infrared photorefractionJAZBINSEK, M; HAERTLE, D; BACH, T et al.Ferroelectrics (Print). 2005, Vol 318, pp 89-94, issn 0015-0193, 6 p.Conference Paper

Oscillation dependence of two-wave mixing gain for unidirectional ring resonator in photorefractive materialsMAURYA, M. K; YADAV, T. K; YADAV, R. A et al.Optics and laser technology. 2010, Vol 42, Num 3, pp 465-476, issn 0030-3992, 12 p.Article

Two beam coupling in semi-insulating GaN film using electroabsorption effectINNAMI, Takeharu; FUJIMURA, Ryushi; NOMURA, Masahiro et al.Optical review. 2005, Vol 12, Num 6, pp 448-450, issn 1340-6000, 3 p.Article

Understanding and eliminating photovoltaic induced instabilities in contra-directional two-beam coupling in photorefractive LiNbO3:FeEVANS, D. R; CAMS, J. L; BASUN, S. A et al.Optical materials (Amsterdam). 2005, Vol 27, Num 11, pp 1730-1732, issn 0925-3467, 3 p.Conference Paper

Experimental investigation of the relationship between photorefractive and two-beam coupling response timesMATSUSHIMA, S.-S; TOMITA, Y.Optics communications. 1996, Vol 128, Num 4-6, pp 287-291, issn 0030-4018Article

Correlated-fields high-resolution spectroscopyOHNO, S; ISHII, T; SONEHARA, T et al.Journal of luminescence. 2004, Vol 107, Num 1-4, pp 298-303, issn 0022-2313, 6 p.Conference Paper

Photorefractive effect of liquid crystalline materialsSASAKI, Takeo.Polymer journal. 2005, Vol 37, Num 11, pp 797-812, issn 0032-3896, 16 p.Article

Elimination of photovoltaic induced instabilities and the theoretical evaluation of material parameters in iron-doped lithium niobate using contra-directional two-beam couplingEVANS, D. R; SALEH, M. A; ALLEN, A. S et al.Ferroelectrics (Print). 2003, Vol 285, pp 303-310, issn 0015-0193, 8 p.Conference Paper

Synthesis and design of photorefractive polymer containing bi-functional chromophoresYIWANG CHEN; ZHIJIAN CHEN; QIHUANG GONG et al.Materials letters (General ed.). 2003, Vol 57, Num 15, pp 2271-2276, issn 0167-577X, 6 p.Article

Application to optically controlled spatial light modulator using organic photorefractive compositeJOO, Won-Jae; KIM, Nakjoong.Polymer journal. 2004, Vol 36, Num 9, pp 674-678, issn 0032-3896, 5 p.Article

Dynamic bragg gratings induced in erbium-doped fiber at phase-modulated beams' couplingBARMENKOV, Yuri O; KIR'YANOV, Alexander V; ANDRES, Miguel V et al.IEEE journal of quantum electronics. 2005, Vol 41, Num 9, pp 1176-1180, issn 0018-9197, 5 p.Article

Growth and photorefractive properties of Mg:Ce:Fe:LiNbΟ3 crystalsZHAOPENG XU.Optical materials (Amsterdam). 2008, Vol 30, Num 6, pp 920-923, issn 0925-3467, 4 p.Article

Photorefractive polymer composites using a trinitrofluorenone-C60 dyad with a conformationally flexible linker as photosensitizerMARTIN-GOMIS, Luis; FERNANDEZ-LAZARO, Fernando; SASTRE-SANTOS, Angela et al.Synthetic metals. 2007, Vol 157, Num 24, pp 1064-1070, issn 0379-6779, 7 p.Article

Photorefractivity of hyperbranched polyisophthalate endcapped with pendant carbazolyl and azobenzene groupsHUIGUANG KOU; WENFANG SHI.European polymer journal. 2004, Vol 40, Num 7, pp 1337-1342, issn 0014-3057, 6 p.Article

Displacement of Multiple, Coupled Timoshenko Beams in Discontinuous Nonlinear Elastic Contact, With Application to Rolling MillsMALIK, Arif S; HINTON, Jantzen L.Journal of manufacturing science and engineering. 2012, Vol 134, Num 5, issn 1087-1357, 051009.1-051009.10Article

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