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首页> 外文期刊>The Journal of Chemical Physics >Orbital electron densities of ethane: Comparison of electron momentum spectroscopy measurements with near Hartree-Fock limit and density functional theory calculations
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Orbital electron densities of ethane: Comparison of electron momentum spectroscopy measurements with near Hartree-Fock limit and density functional theory calculations

机译:乙烷的轨道电子密度:电子动量谱测量与近Hartree-Fock极限和密度泛函理论计算的比较

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Electron density distributions in momentum space of the valence orbitals of ethane (C_2H_6) are measured by electron momentum spectroscopy (EMS) in a noncoplanar symmetric geometry. The impact energy was 1200 eV plus binding energy and energy resolution of the EMS spectrometer was 0.95 eV. The mesured experimental momentum distributions of the valence orbitals are compared with Hartree-Fock and density functional theory (DFT) calculations. The shapes of the experimental momentum distributions are generally quite well described by both the Hartree-Fock and DFT calculations when large and diffuse basis sets are used. A strong "turn up" of the experimental cross section is observed for the HOMO 1e_g orbital in the low momentum region, compared with the theoretical calculations. The pole strengths for the main ionization peaks in the inner-valence region are estimated.
机译:通过电子动量谱(EMS)在非共面对称几何结构中测量乙烷(C_2H_6)价轨道的动量空间中的电子密度分布。冲击能量为1200 eV,加上结合能,EMS光谱仪的能量分辨率为0.95 eV。将化合价轨道的测量实验动量分布与Hartree-Fock和密度泛函理论(DFT)计算进行比较。当使用大和分散基集时,Hartree-Fock和DFT计算通常很好地描述了实验动量分布的形状。与理论计算相比,在低动量区域内,HOMO 1e_g轨道观察到了实验截面的强烈“上升”。估计内价区域中主要电离峰的极强度。

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