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首页> 外文期刊>Physical Review, B. Condensed Matter >Density-matrix renormalization-group study of low-lying excitations of polyacene within a Pariser-Parr-Pople model - art. no. 035116
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Density-matrix renormalization-group study of low-lying excitations of polyacene within a Pariser-Parr-Pople model - art. no. 035116

机译:在Pariser-Parr-Pople模型中低密度激发多并苯的密度矩阵重整化组研究-艺术。没有。 035116

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摘要

We have carried out symmetrized density-matrix renormalization-group calculations to study the nature of excited states of long polyacene oligomers within a Pariser-Parr-Pople Hamiltonian. We have used the C-2 symmetry, the electron-hole symmetry, and the spin parity of the system in our calculations. We find that there is a crossover in the lowest dipole forbidden two-photon state and the lowest dipole allowed excited state with size of the oligomer. In the long system limit, the two-photon state lies below the lowest dipole allowed excited state. The triplet state lies well below the two-photon state and energetically does not correspond to its description as being made up of two triplets. These results are in agreement with the general trends in linear conjugated polymers. However, unlike in linear polyenes wherein the two-photon state is a localized excitation, we find that in polyacenes, the two-photon excitation is spread out over the system. We have doped the systems with a hole and an electron and have calculated the charge excitation gap. Using the charge gap and the optical gap, we estimate the binding energy of the 1(1)B(-) exciton to be 2.09 eV. We have also studied doubly doped polyacenes and find that the bipolaron in these systems, to be composed of two separated polarons, as indicated by the calculated charge-density profile and charge-charge correlation function. We have studied bond orders in various states in order to get an idea of the excited state geometry of the system. We find that the ground state, the triplet state, the dipole allowed state, and the polaron excitations correspond to lengthening of the rung bonds in the interior of the oligomer while the two-photon excitation corresponds to the rung bond lengths having two maxima in the system. [References: 38]
机译:我们已经进行了对称的密度矩阵重整化组计算,以研究Pariser-Parr-Pople哈密顿量内的长多并苯低聚物的激发态性质。在计算中,我们使用了C-2对称性,电子-空穴对称性和系统的自旋奇偶性。我们发现,在最低偶极子禁止的两个光子状态和最低偶极子允许的激发态之间存在一个低聚物尺寸的交叉。在长系统极限中,双光子状态低于最低偶极子允许激发态。三重态处于远低于二光子态的状态,并且在能量上与由三重态组成的描述不符。这些结果与线性共轭聚合物的总体趋势一致。但是,与线性多烯中的双光子状态是局部激发不同,我们发现在聚并苯中,双光子激发分布在整个系统中。我们给系统掺杂了一个空穴和一个电子,并计算了电荷激发间隙。使用电荷间隙和光学间隙,我们估计1(1)B(-)激子的结合能为2.09 eV。我们还研究了双掺杂的聚并苯,发现这些系统中的双极化子由两个分离的极化子组成,这由计算出的电荷密度分布和电荷-电荷相关函数表示。为了研究系统的激发态几何,我们研究了各种状态下的键序。我们发现,基态,三重态,偶极允许态和极化子激发对应于低聚物内部梯级键的延长,而双光子激发对应于梯级键长,其中在两个方向上都有两个最大值。系统。 [参考:38]

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