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Two-photon absorption, absorption saturation and dispersion of the real and imaginary parts of the third-order optical nonlinearity in organometallic dendrimers

机译:有机金属树枝状大分子中的三阶光学非线性的实部和虚部的两光节吸收,吸收饱和度和分散

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We have been studying third-order NLO properties of ruthenium-containing organometallic dendrimers. These molecules offer large hyperpolarizabilities and the possibility to control both the refractive and absorptive parts of the nonlinear response by electrochemical switching of the oxidation state of the ruthenium centres. Time-resolved studies indicate that it is possible to switch the molecules between the form in which they are two-photon absorbers and the state where they are fast (~ 1 picosecond time scale) saturable absorbers. Measurements of the dispersion of third-order nonlinearity have been made by the Z-scan technique on a nitro decorated dendrimer. They indicate that competition between two-photon absorption and absorption saturation is present in some wavelength ranges. The dispersion of both the real and imaginary parts of the cubic polarizability could be modelled by considering leading terms of the dispersion relation.
机译:我们一直研究含钌的有机金属树枝状大分子的三阶NLO性质。这些分子通过钌中心的氧化状态的电化学切换来提供大的超极化性和控制非线性响应的折射和吸收部分的可能性。时间解决的研究表明,可以在它们是双光子吸收器的形式之间切换分子,并且它们是快速(〜1pic秒时尺度)可饱和吸收剂的状态。 Z-Scan技术在硝基装饰树枝状丝上的Z扫描技术已经进行了三阶非线性分散的测量。它们表明,在一些波长范围内存在双光子吸收和吸收饱和之间的竞争。可以通过考虑分散关系的领先术语来建模立方偏振性的真实和虚部的实部和虚部的分散。

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