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首页> 外文期刊>The Journal of Chemical Physics >Quantum Singwi-Tosi-Land-Sjolander approach for interacting inhomogeneous systems under electromagnetic fields: Comparison with exact results
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Quantum Singwi-Tosi-Land-Sjolander approach for interacting inhomogeneous systems under electromagnetic fields: Comparison with exact results

机译:电磁场下互动系统互动系统的量子单曲 - 陆地山脉方法:与精确结果相比

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摘要

For inhomogeneous interacting electronic systems under a time-dependent electromagnetic perturbation, we derive the linear equation for response functions in a quantum mechanical manner. It is a natural extension of the original semi-classical Singwi-Tosi-Land-Sjolander (STLS) approach for an electron gas. The factorization ansatz for the two-particle distribution is an indispensable ingredient in the STLS approaches for the determination of the response function and the pair correlation function. In this study, we choose an analytically solvable interacting two-electron system as the target for which we examine the validity of the approximation. It is demonstrated that the STLS response function reproduces well the exact one for low-energy excitations. The interaction energy contributed from the STLS response function is also discussed. Published by AIP Publishing.
机译:对于在时间依赖的电磁扰动下的非均匀交互电子系统,我们通过量子的机械方式导出了响应函数的线性方程。 它是用于电子气体的原始半古典Singwi-Tosi-Land-Sjolander(STLS)方法的自然延伸。 用于双粒子分布的分解Ansatz是STLS中的不可缺少的成分,用于确定响应功能和对相关函数的方法。 在这项研究中,我们选择一个分析可溶性的双电子系统作为我们检查近似的有效性的目标。 结果证明,STL响应函数再现精确的函数,用于低能量激励。 还讨论了从STL响应函数贡献的交互能量。 通过AIP发布发布。

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