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Evgeny Liverts

Publications and source records attributed to Evgeny Liverts.

3 recordsLinked to original sources

Averaged electron densities of the helium-like atoms

Different kinds of averaging of the wavefunctions/densities of the two-electron atomic systems are investigated. Using the Pekeris-like method, the ground state wave functions $Ψ$ of the helium-like atoms with nucleus charge $1\leq Z\leq5$ are calculated in a few coordinate systems including the hyperspherical coordinates $\left\{R,α,θ\right\}$. The wave functions $Ψ_{av}(R)$ of the hyperspherical radius $R$ are calculated numerically by averaging $Ψ$ over the hyperspherical angles $α$ and $θ$. The exact analytic representations for the relative derivatives $Ψ_{av}'(0)/Ψ_{av}(0)$ and $Ψ_{av}''(0)/Ψ_{av}(0)$ are derived. Analytic approximations very close to the actual $Ψ_{av}(R)$ are obtained. Using actual wave functions $Ψ$, the one-electron densities $ρ(r)$ are calculated as functions of the electron-nucleus distance $r$. The relevant derivatives $ρ'(0)/ρ(0)$ and $ρ''(0)/ρ(0)$ characterizing the behavior of $ρ(r)$ near the nucleus are calculated numerically. Very accurate analytical approximations, representing the actual one-electron density both near the nucleus and far away from it, are derived. All the analytical and numerical results are supplemented with tables and graphs.

physics.atom-ph

Helium-like atoms. The Green's function approach to the Fock expansion calculations

The renewed Green's function approach to calculating the angular Fock coefficients, $ψ_{k,p}(α,θ)$ is presented. The final formulas are simplified and specified to be applicable for analytical as well as numerical calculations. The Green's function formulas with the hyperspherical angles $θ=0,π$ (arbitrary $α$) or $α=0,π$ (arbitrary $θ$) are indicated as corresponding to the angular Fock coefficients possessing physical meaning. The most interesting case of $θ=0$ corresponding to a collinear arrangement of the particles is studied in detail. It is emphasized that this case represents the generalization of the specific cases of the electron-nucleus ($α=0$) and electron-electron ($α=π/2$) coalescences. It is shown that the Green's function method for $θ=0$ enables us to calculate any component/subcomponent of the angular Fock coefficient in the form of a single series representation with arbitrary angle $θ$. Those cases, where the Green's function approach can not be applied, are thoroughly studied, and the corresponding solutions are found.

physics.atom-ph

Multipole Analysis of Radio-Frequency Reactions in Ultra-Cold Atoms

Using the multipole expansion we analyze photo induced reactions in an ultra-cold atomic gas composed of identical neutral bosons. While the Frank-Condon factor dominates the photo induced spin-flip reactions, we have found that for frozen-spin process where the atomic spins are conserved the reaction rate is governed by the monopole $r^2$ and the quadrupole terms. Consequently, the dependence of the frozen-spin reaction rate on the photon wave number $k$ acquires an extra $k^4$ factor in comparison to the spin-flip process. Comparing the relative strength of the $r^2$ and quadrupole modes in dimer photoassociation we predict that the mutual importance of these two modes changes with temperature and scattering length.

cond-mat.quant-gas