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Excitation energies of pi-conjugated oligomers within time-dependent current-density-functional theory

机译:时变电流密度泛函理论中π共轭低聚物的激发能

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We study the pi*<--pi singlet excitations of the pi-conjugated oligomers of polyacetylene, polydiacetylene, polybutatriene, polythiophene, poly(para-phenylene vinylene), and the lowest singlet excitations of the hydrogen chain. For this we used time-dependent current-density-functional theory within the Vignale-Kohn and adiabatic local density approximations. By studying the dependence of the excitation spectrum on the chain length we conclude that the reduction of the static polarizability when using the Vignale-Kohn functional has two origins. First, the excitation energies of transitions with a large transition dipole are shifted upward. Second, the character of the transition between the lowest occupied and highest unoccupied molecular orbitals and the oscillator strength of the lowest transition within the adiabatic local density approximation is transferred to higher transitions. The lowest transitions that have a considerable oscillator strength obtained with the Vignale-Kohn functional have excitation energies that are in most cases in better agreement with available reference data than the adiabatic local density approximation. (C) 2004 American Institute of Physics.
机译:我们研究了聚乙炔,聚二乙炔,聚丁三烯,聚噻吩,聚对苯撑亚乙烯基的pi共轭低聚物的pi * <-pi单重态激发以及氢链的最低单重态激发。为此,我们在Vignale-Kohn中使用了时变电流密度函数理论,并采用了绝热局部密度近似。通过研究激发光谱对链长的依赖性,我们得出结论,使用Vignale-Kohn官能团时静态极化率的降低有两个原因。首先,跃迁偶极大的跃迁的激发能向上移动。其次,绝热局部密度近似内最低占据和最高未占据分子轨道之间的跃迁特性和最低跃迁的振荡强度被转换为更高的跃迁。用Vignale-Kohn函数获得的具有相当大的振荡器强度的最低跃迁具有的激发能,在大多数情况下与绝热局部密度近似值相比,与可用的参考数据更好地吻合。 (C)2004年美国物理研究所。

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