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Exciton Self-Trapping in Molecular Media with an Elastic Dipole Moment

机译:具有弹性偶极矩的分子介质中的激子自陷

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摘要

Exciton self-trapping in a molecular medium is considered within a self-consistent model taking into account the change in the dipole moment as a result of a displacement of molecules and the resonance interaction with an electromagnetic field. New mechanisms and specific features of the formation of localized structures in quasi-one-dimensional molecular structures are investigated. It is shown that the dependence of the dipole moment on molecular vibrations leads to new conditions for exciton self-trapping and intrinsic optical bistability, as well as for the formation of electromagnetically induced transparency. The theory proposed is used to explain the specific features of exciton self-trapping in a conjugated polymer and J aggregates of dyes under the action of an external laser field.
机译:考虑到分子位移和与电磁场的共振相互作用导致偶极矩发生变化,因此在自洽模型中考虑了分子介质中的激子自陷。研究了准一维分子结构中局部结构形成的新机制和新特征。结果表明,偶极矩对分子振动的依赖性导致了激子自陷和固有光学双稳性以及形成电磁感应透明性的新条件。提出的理论用于解释在外部激光场作用下,共轭聚合物和染料的J聚集体中激子自陷的特定特征。

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