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Orbital momentum profiles and binding energy spectra for the complete valence shell of propane

机译:丙烷完整价壳的轨道动量分布和结合能谱

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The orbital momentum profiles and binding energy spectra for the complete valence shell of propane are reported. The experiment has been performed using a high energy resolution (#DELTA#E = 0.95 eV FWHM) multichannel (e,2e) electron momentum spectrosocopy spectrometer at an impact energy of 1200 eV plus the binding energy. The measured binding energy spectra are compared and consistent with PES data available in the literature and also with the predictions of Hartree-Fock, Green's function and MRSD-CI methods. A strong splitting observed in the inner valence energy spectra due to electron correlation and ion relaxation effects is confirmed by MRSD-CI calculations. The experimental momentum profiles have been compared with calculations obtained using the target Hartree-Fock method with a minimum basis set and also a very large basis set. Density functional theory calculations using B3LYP functionals as well as large basis set MRSD-CI calculations are also reported. The agreement between theory and experiment for the shape of the orbital electron momentum distributions is generally good.
机译:报告了丙烷完整价壳的轨道动量分布和结合能谱。使用高能量分辨率(#DELTA#E = 0.95 eV FWHM)多通道(e,2e)电子动能谱仪进行了该实验,冲击能为1200 eV加结合能。对测得的结合能谱进行了比较,并与文献中提供的PES数据相一致,并且与Hartree-Fock,Green函数和MRSD-CI方法的预测相符。 MRSD-CI计算证实了由于电子相关性和离子弛豫效应而在内价能谱中观察到的强分裂。实验动量曲线已与使用目标Hartree-Fock方法获得的计算(具有最小基集和非常大的基集)进行了比较。还报告了使用B3LYP泛函的密度泛函理论计算以及大型基础集MRSD-CI计算。对于轨道电子动量分布的形状,理论和实验之间的一致性通常很好。

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