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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers & Short Notes >Asymmetric Two-Beam Coupling with High Optical Gain and High Beam Diffraction in External-Electric-Field-Free Polymer Composites
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Asymmetric Two-Beam Coupling with High Optical Gain and High Beam Diffraction in External-Electric-Field-Free Polymer Composites

机译:外电场无聚合物复合材料中具有高光学增益和高光束衍射的不对称两光束耦合

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This paper presents high-performance asymmetric two-beam coupling, beam diffraction and holographic recording in polymeric composites without poling and applying an external electric field. The polymer composites are based on poly(2-(9-carbazoyl)ethyl methacrylate) (PCzEMA) and poly(N-vinyl carbazole) (PVCz) as host matrices with 2,4,7-trinitro-9-fluorenone (TNF) as a sensitizer, four kinds of plasticizer; tricresyl phosphate (TCP), n-butyl benzyl phthalate (BBP), diphenyl phthalate (DPP), and dicyclohexyl phthalate (DCP); and (s)-(-)-1-(4-nitrophenyl)-2-pyrrolidine-methanol (NPP) as a nonlinear optical dye. The gain coefficient and diffraction efficiency increased markedly with increasing TNF and NPP concentrations. The highest net gain coefficient of 101.9cm~(-1) with optical gain of 224cm~(-1) and absorption coefficient of 122.1cm~(-1) was obtained for PVCz/NPP/DDP/TNF (35/20/40/5), and the highest diffraction efficiency of 88% was achieved for PCzEMA/NPP/TCP/TNF (35/30/30/5) and PVCz/NPP/DDP/TNF (35/20/39/6) composites. The BBP plasticizer significantly enhanced the speed of two-beam coupling and diffraction grating formation for both PVCz and PCzEMA composites. Holographic images stored in the polymer composites were clearly read out using a probe beam. The key point for achieving the external-electric-field-free high performance of asymmetric energy transfer and diffraction efficiency is to have a high concentration of TNF (5 or 7 wt%).
机译:本文介绍了在不极化和不施加外部电场的情况下,聚合物复合材料中的高性能非对称两光束耦合,光束衍射和全息记录。聚合物复合材料基于聚(2-(9-咔唑基)甲基丙烯酸乙酯(PCzEMA)和聚(N-乙烯基咔唑)(PVCz)作为基质,带有2,4,7-三硝基-9-芴酮(TNF)作为敏化剂,有四种增塑剂;磷酸三甲苯酯(TCP),邻苯二甲酸正丁酯(BBP),邻苯二甲酸二苯酯(DPP)和邻苯二甲酸二环己酯(DCP);和(s)-(-)-1-(4-硝基苯基)-2-吡咯烷-甲醇(NPP)作为非线性光学染料。增益系数和衍射效率随着TNF和NPP浓度的增加而显着增加。 PVCz / NPP / DDP / TNF(35/20/40)的最高净增益系数为101.9cm〜(-1),光增益为224cm〜(-1),吸收系数为122.1cm〜(-1) / 5),PCzEMA / NPP / TCP / TNF(35/30/30/5)和PVCz / NPP / DDP / TNF(35/20/39/6)复合材料的最高衍射效率达到88%。 BBP增塑剂显着提高了PVCz和PCzEMA复合材料的两束耦合和衍射光栅形成的速度。使用探针束清楚地读出存储在聚合物复合物中的全息图像。获得高浓度的TNF(5或7 wt%),是实现无外部电场的不对称能量转移和衍射效率高性能的关键。

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