2019
DOI: 10.1016/bs.aiq.2019.06.007
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Correlated model atom in a time-dependent external field: Sign effect in the energy shift

Abstract: In this contribution we determine the exact solution for the ground-state wave function of a two-particle correlated model atom with harmonic interactions. From that wave function, the nonidempotent one-particle reduced density matrix is deduced. Its diagonal gives the exact probability density, the basic variable of Density-Functional Theory. The one-matrix is directly decomposed, in a point-wise manner, in terms of natural orbitals and their occupation numbers, i.e., in terms of its eigenvalues and normalize… Show more

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Cited by 4 publications
(3 citation statements)
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References 51 publications
(84 reference statements)
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“…For close impact (R is small) the external swift projectile moves inside atomic orbits. There, the consideration of discrete electron-binding results in a sign-effect opposite [30,31] to the above-discussed one. Thus, the cancellation of opposite-sign trajectory-dependent terms may strongly influence the formal enhancement based on an empirical weighting of homogeneous results, considering random collisional conditions.…”
Section: Modeling Results and Discussionmentioning
confidence: 97%
“…For close impact (R is small) the external swift projectile moves inside atomic orbits. There, the consideration of discrete electron-binding results in a sign-effect opposite [30,31] to the above-discussed one. Thus, the cancellation of opposite-sign trajectory-dependent terms may strongly influence the formal enhancement based on an empirical weighting of homogeneous results, considering random collisional conditions.…”
Section: Modeling Results and Discussionmentioning
confidence: 97%
“…We stress, finally, that the truly exciting theoretical problem of interparticle interaction, i.e., correlated motion of electrons, is considered in stopping calculations only at the mean-field level. However, at least for a prototypal two-particle correlated model system, a recent exact result [40] for the energy shift in time-dependent (passing) perturbations indicates that proper independent modes, rather than effective single-particle states, could pave the way for future developments.…”
Section: Discussionmentioning
confidence: 99%
“…We stress, finally, that the truly exciting theoretical problem of interparticle-interaction, i.e., correlated motion of electrons, is considered in stopping calculation only at the mean-field level. However, at least for a prototype two-particle correlated model system, recent exact result [40] for the energy shift in time-dependent (passing) perturbations indicates that proper independent modes, rather than effective single-particle states, could pave the path to future developments.…”
Section: Summary and Commentsmentioning
confidence: 99%