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首页> 外文期刊>The Journal of Chemical Physics >Reduced explicitly correlated Hartree-Fock approach within the nuclear-electronic orbital framework: Applications to positronic molecular systems
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Reduced explicitly correlated Hartree-Fock approach within the nuclear-electronic orbital framework: Applications to positronic molecular systems

机译:在核电子轨道框架内减少显式相关的Hartree-Fock方法:在正电子分子系统中的应用

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In the application of the nuclear-electronic orbital (NEO) method to positronic systems, all electrons and the positron are treated quantum mechanically on the same level. Explicit electron-positron correlation can be included using Gaussian-type geminal functions within the variational self-consistentfield procedure. In this paper, we apply the recently developed reduced explicitly correlated Hartree-Fock (RXCHF) approach to positronic molecular systems. In the application of RXCHF to positronic systems, only a single electronic orbital is explicitly correlated to the positronic orbital. We apply NEO-RXCHF to three systems: positron-lithium, lithium positride, and positron-lithium hydride. For all three of these systems, the RXCHF approach provides accurate two-photon annihilation rates, average contact densities, electronic and positronic single-particle densities, and electron-positron contact densities. Moreover, the RXCHF approach is significantly more accurate than the original XCHF approach, in which all electronic orbitals are explicitly correlated to the positronic orbital in the same manner, because the RXCHF wavefunction is optimized to produce a highly accurate description of the short-ranged electron-positron interaction that dictates the annihilation rates and other local properties. Furthermore, RXCHF methods that neglect or approximate the electronic exchange interactions between the geminal-coupled electronic orbital and the regular electronic orbitals lead to virtually identical annihilation rates and densities as the fully antisymmetric RXCHF method but offer substantial advantages in computational tractability. Thus, NEO-RXCHF is a promising, computationally practical approach for studying larger positron-containing systems.
机译:在将核电子轨道(NEO)方法应用于正电子系统中时,所有电子和正电子在相同的水平上被量子力学处理。在变分自洽场过程中,可以使用高斯型双键函数包括显式的电子-正电子相关性。在本文中,我们将最近开发的简化显式相关Hartree-Fock(RXCHF)方法应用于正电子分子系统。在RXCHF在正电子系统中的应用中,只有一个电子轨道明确地与正电子轨道相关。我们将NEO-RXCHF应用于三个系统:正电子锂,正硅酸锂和正电子氢化锂。对于所有这三个系统,RXCHF方法均可提供准确的双光子an灭率,平均接触密度,电子和正电子单粒子密度以及电子-正电子接触密度。此外,RXCHF方法比原始的XCHF方法要准确得多,在原始的XCHF方法中,所有电子轨道都以相同的方式明确地与正电子轨道相关,因为RXCHF波函数经过优化,可以对短程电子进行高精度描述-正电子相互作用,决定the灭率和其他局部性质。此外,忽略或近似双子耦合电子轨道和规则电子轨道之间的电子交换相互作用的RXCHF方法导致的rates灭率和密度与完全反对称的RXCHF方法几乎相同,但在计算可处理性方面具有实质性优势。因此,NEO-RXCHF是用于研究较大的含正电子的系统的一种有希望的,计算上可行的方法。

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