首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Density-potential relation via the single-particle kinetic energy density for one-dimensional two-level fermion systems with application to Be-like atomic ions in the (1s)(2)(2s)(2) configuration
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Density-potential relation via the single-particle kinetic energy density for one-dimensional two-level fermion systems with application to Be-like atomic ions in the (1s)(2)(2s)(2) configuration

机译:一维两能级费米子系统通过单粒子动能密度的密度-势关系,并应用于(1s)(2)(2s)(2)构型的Be原子离子

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摘要

Using the Dawson-March transformation of two-level wave functions in terms of density amplitude and phase, a differential equation is constructed relating the single-particle kinetic energy to the fermion density. Employing then the differential form of the virial theorem derived by March and Young [Nucl. Phys. 12, 237 (1959)], a nonlinear electron-density-one-body potential relation emerges. Application to the Be-like atomic ions is briefly considered.
机译:使用关于密度振幅和相位的两级波函数的Dawson-March变换,构造了将单粒子动能与费米子密度相关联的微分方程。然后采用March和Young [Nucl。物理12,12,237(1959)],出现了非线性的电子密度一体电势关系。简要考虑了对Be类原子离子的应用。

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