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Theory of optical nonlinearity in pi-conjugated polymers and related materials.

机译:π共轭聚合物和相关材料中的光学非线性理论。

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摘要

Within the framework of interacting-electron models, the optical nonlinearity in π-conjugated polymers is investigated theoretically. A complete microscopic many-body theory is developed for the mechanism of the third order nonlinearity in these materials. The universality and the predictability of the theory are well established. It is found that the bulk of the optical nonlinearity in conjugated polymers is determined by four essential states although all the excited states are involved. It is also found that electron-electron Coulomb interactions in one-dimensional systems play key roles in the nonlinear optical processes and are responsible for the observed spectroscopic features. The theoretical results are compared with experiments in wide variety of materials and excellent agreements between theory and experiments are obtained. With the essential-state theory, various experiments are explained within a single unified theory for the first time, and many controversies are resolved.
机译:在相互作用电子模型的框架内,理论上研究了π共轭聚合物的光学非线性。针对这些材料中三阶非线性的机理,开发了完整的微观多体理论。该理论的普遍性和可预测性已得到很好的确立。已经发现,尽管涉及所有激发态,但共轭聚合物中的大部分光学非线性是由四个基本态决定的。还发现一维系统中的电子-电子库仑相互作用在非线性光学过程中起关键作用,并负责观察到的光谱特征。将理论结果与多种材料的实验进行比较,并在理论和实验之间取得了很好的一致性。利用本质状态理论,首次在统一的理论中对各种实验进行了解释,并解决了许多争议。

著录项

  • 作者

    Guo Dandan.;

  • 作者单位
  • 年度 1993
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  • 原文格式 PDF
  • 正文语种 en
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