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Nonlinear optical properties of fullerene-porphyrin complexes

机译:富勒烯-卟啉配合物的非线性光学性质

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摘要

The nonlinear optical properties, optical limitation, and second- and third-order nonlinearity in a new class of noncovalently bonded fullerene-porphyrin complexes are investigated. Quantum-chemical calculations of the optimal geometry, binding energy, electronic structure, and nonlinear optical properties of donor-acceptor fullerene-prophyrin complexes are performed. As a result of the formation of a complex, the second-order molecular polarizability is higher than in porphyrins by two to three orders of magnitude, depending on the orientation of the molecule, and the third-order molecular susceptibility two orders of magnitude higher. The nonlinear absorption in thin films and solutions of the complexes is measured. In picosecond regimes, absorption saturation at 560nm wavelength is observed for pulse energy density above 0.01J/cm2. A model is proposed for the increase of the optical nonlinearity in complexes as compared with the molecular components.
机译:研究了一类新的非共价键合的富勒烯-卟啉配合物的非线性光学性质,光学极限以及二阶和三阶非线性。进行了供体-受体富勒烯-卟啉配合物的最佳几何构型,结合能,电子结构和非线性光学性质的量子化学计算。作为形成复合物的结果,取决于分子的取向,二阶分子的极化率比卟啉中的二至三个数量级高,而三阶分子的磁化率则高两个数量级。测量薄膜和配合物溶液中的非线性吸收。在皮秒状态下,对于超过0.01J / cm2的脉冲能量密度,在560nm波长处观察到吸收饱和。提出了一种与分子组分相比提高配合物中光学非线性的模型。

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  • 来源
    《Journal of Optical Technology》 |2010年第1期|p.1-5|共5页
  • 作者单位

    St. Petersburg State Polytechnical University, St. Petersburg;

    A. F. Ioffe Physicotechnical Institute of the Russian Academy of Sciences, St. Petersburg;

    Scientific and Industrial Company “S. I. Vavilov State Optics Institute,” St. Petersburg;

    Institute of Chemical Physics of the Russian Academy of Sciences, Chernogolovka, Moscow Oblast;

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