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Off-resonant nonlinear optical properties of conjugated organic polymers: origins and nature

机译:共轭有机聚合物的非共振非线性光学性质:起源和性质

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Abstract: Results of a series of nonlinear optical studies of organic conjugated systems are reported and discussed with a view towards deriving an understanding of the origins and nature of the near infrared nonlinear optical properties of organic conjugated polymers. Measurements were made in solution by the method of self-diffraction from laser induced gratings at a wavelength of 1.064 $mu@m. In a series of enyne oligomers, concentration dependences of the diffraction efficiencies show large contributions from imaginary components of the nonlinear susceptibilities. The origins of these imaginary components are linked to the nature of the response of 1D conjugated systems to a perturbation of the electronic configuration in the form of electron-lattice interaction. The role of the influence of such interactions in limiting the nonlinear optical response of polymers is discussed. In a range of polymeric systems, intensity dependences of the diffraction efficiencies reveal the strong influence of the multiphoton resonant enhancement of the nonlinearity. In three polymers, exhibiting strong similarities in linear optical properties, a striking variation of the order of the nonlinear optical susceptibilities at the wavelength studied is observed, originating in differing distributions of multiphoton states. The positioning of these states is largely determined by electron correlation interactions and the strength of these interactions are discussed in terms of monomeric structure. Finally the inclusion of electron rich species in the polymeric backbone is investigated and studies of metal containing organic species are reported.!26
机译:摘要:报道并讨论了一系列有机共轭体系的非线性光学研究结果,以期了解有机共轭聚合物的近红外非线性光学性质的起源和性质。通过自衍射法在波长为1.064μm的激光诱导光栅中在溶液中进行测量。在一系列烯炔低聚物中,衍射效率的浓度依赖性显示出非线性磁化率的虚构成分的巨大贡献。这些虚构成分的起源与一维共轭体系对电子构型以电子-晶格相互作用形式的摄动的响应的性质有关。讨论了这种相互作用的影响在限制聚合物的非线性光学响应中的作用。在一系列聚合物系统中,衍射效率的强度相关性揭示了非线性的多光子共振增强的强烈影响。在三种表现出线性光学性质的强相似性的聚合物中,观察到在所研究的波长处非线性光学磁化率阶数的惊人变化,其起因于多光子态的不同分布。这些状态的定位在很大程度上取决于电子相关性相互作用,并且根据单体结构讨论了这些相互作用的强度。最后,研究了在聚合物主链中包含富电子物种的情况,并报道了含金属的有机物种的研究。26

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