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电荷转移激子控制 Davydov 分裂并介导并五苯中的单重激子裂变。

Charge-transfer excitations steer the Davydov splitting and mediate singlet exciton fission in pentacene.

机构信息

Laboratory for Chemistry of Novel Materials, University of Mons, Place du Parc 20, 7000 Mons, Belgium.

出版信息

Phys Rev Lett. 2013 May 31;110(22):226402. doi: 10.1103/PhysRevLett.110.226402.

Abstract

Quantum-chemical calculations are combined to a model Frenkel-Holstein Hamiltonian to assess the nature of the lowest electronic excitations in the pentacene crystal. We show that an admixture of charge-transfer excitations into the lowest singlet excited states form the origin of the Davydov splitting and mediate instantaneous singlet exciton fission by direct optical excitation of coherently coupled single and double exciton states, in agreement with recent experiments.

摘要

量子化学计算被结合到一个 Frenkel-Holstein 哈密顿模型中,以评估并五苯晶体中最低电子激发的性质。我们表明,电荷转移激发与最低单重激发态的混合形成了 Davydov 分裂的起源,并通过对相干耦合的单重和双重激发态的直接光学激发,介导瞬时单重激子裂变,这与最近的实验结果一致。

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