Tretiak Sergei, Kilina Svetlana, Piryatinski Andrei, Saxena Avadh, Martin Richard L, Bishop Alan R
Theoretical Division, Center for Nonlinear Studies (CNLS), and Center for Integrated Nanotechnologies (CINT), Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Nano Lett. 2007 Jan;7(1):86-92. doi: 10.1021/nl0622000.
We investigate coupled excitonic and vibrational effects in carbon nanotubes using a time-dependent Hartree-Fock approach. The results reveal intricate details of excited-state dynamics. In the ground state, spontaneous uneven distribution of the pi electrons over the bonds (i.e., Peierls dimerization) is observed throughout the entire nanotube, particularly in large-radius CNTs. However, we demonstrate that vibrational relaxation following photoexcitations leads to substantial local distortion of the tube surface, overriding the Peierls dimerization. This mutually affects the electronic system, resulting in localized states (self-trapped excitons). These phenomena critically control photoinduced dynamics and charge transport in nanotube materials.
我们使用含时哈特里-福克方法研究了碳纳米管中的耦合激子和振动效应。结果揭示了激发态动力学的复杂细节。在基态下,观察到整个纳米管中π电子在键上自发地不均匀分布(即派尔斯二聚化),特别是在大半径碳纳米管中。然而,我们证明光激发后的振动弛豫会导致管表面出现大量局部畸变,从而超越派尔斯二聚化。这反过来又影响电子系统,导致出现局域态(自陷激子)。这些现象对纳米管材料中的光诱导动力学和电荷传输起着关键的控制作用。