J. Choi, Eonho Chang, Dylan M. Anstine, M. Madjet, H. Chakraborty
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引用次数: 18
摘要
用密度泛函方法研究了C_60和C_240分子在球形凝胶框架中的光离性质。使用交换相关(xc)泛函的两种不同近似:(i) Gunnerson-Lundqvist参数化[物理学]。通过使用van Leeuwen和Baerends模型势,对电子自相互作用(SIC)和(ii)的梯度依赖性增强(i)进行了明确的修正[物理学报,B 13, 4274(1976)]。Rev. A 49, 2421(1994)],以代替SIC,隐式恢复电子的渐近性质。两种方案对两种分子的基态结果显示出平均场势的形状和束缚能级性质的差异。xc方案的选择也显著地改变了由线性响应动力学相关的非初始化方法得到的偶极子单光电离截面。C_60和C_240在结构和电离反应上的差异揭示了分子大小对潜在物理特性的影响。分析表明,基于梯度的xc选项的集体等离子体共振产生的结果明显更接近于C_60的实验数据。
Effects of exchange-correlation potentials on the density functional description of C_60 versus C_240 photoionization
We study the photoionization properties of the C_60 versus C_240 molecule in a spherical jellium frame of density functional method. Two different approximations to the exchange-correlation (xc) functional are used: (i) The Gunnerson-Lundqvist parametrization [Phys. Rev. B 13, 4274 (1976)] with an explicit correction for the electron self-interaction (SIC) and (ii) a gradient-dependent augmentation of (i) by using the van Leeuwen and Baerends model potential [Phys. Rev. A 49, 2421 (1994)], in lieu of SIC, to implicitly restore electrons' asymptotic properties. Ground state results from the two schemes for both molecules show differences in the shapes of mean-field potentials and bound-level properties. The choice of a xc scheme also significantly alters the dipole single-photoionization cross sections obtained by an abinitio method that incorporates linear-response dynamical correlations. Differences in the structures and ionization responses between C_60 and C_240 uncover the effect of molecular size on the underlying physics. Analysis indicates that the collective plasmon resonances with the gradient-based xc-option produce results noticeably closer to the experimental data available for C_60.