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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Efficient grid-based method in nonequilibrium Green's function calculations: Application to model atoms and molecules
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Efficient grid-based method in nonequilibrium Green's function calculations: Application to model atoms and molecules

机译:非平衡格林函数计算中基于网格的高效方法:在原子和分子建模中的应用

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The finite-element discrete variable representation is proposed to express the nonequilibrium Green's function for strongly inhomogeneous quantum systems. This method is highly favorable against a general basis approach with regard to numerical complexity, memory resources, and computation time. Its flexibility also allows for an accurate representation of spatially extended Hamiltonians and thus opens the way toward a direct solution of the two-time Schwinger-Keldysh-Kadanoff-Baym equations on spatial grids, including, for example, the description of highly excited states in atoms. As benchmarks, we compute and characterize, in Hartree-Fock and second Born approximations, the ground states of the He atom, the H-2 molecule, and the LiH molecule in one spatial dimension. Thereby, the ground-state and binding energies, densities, and bond lengths are compared with the direct solution of the time-dependent Schrodinger equation.
机译:提出了有限元离散变量表示法来表达强非均匀量子系统的非平衡格林函数。在数值复杂性,内存资源和计算时间方面,此方法相对于通用方法是非常有利的。它的灵活性还可以精确表示空间扩展的哈密顿量,从而为直接求解空间网格上的两次Schwinger-Keldysh-Kadanoff-Baym方程开辟了道路,例如,包括对高激发态的描述。原子。作为基准,我们在Hartree-Fock和第二Born近似中计算和表征He原子,H-2分子和LiH分子在一个空间维度上的基态。因此,将基态和结合能,密度和键长与时变薛定inger方程的直接解进行了比较。

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