Abstract
Abstract
The three-body energy levels of the
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CsD2 quasi-molecule in a CsD2Pd12 cluster are calculated using the Cs-D, D-D, Cs-Pd and D-Pd repulsive Coulomb interactions with electronic effects, the central Woods-Saxon potential for the two-body nuclear interactions, and a nuclear three-body potential term. The calculation was performed for distances ranging from fermis to nanometers, in one pass, using 100-figure numerical precision, and for energies between the
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La ground state (-25.92 MeV) to the top of the Pd-barrier. The ion bases calculated results are adjusted to the electron bases chemical ones at the ground state and at the first excited state of CsD2Pd12. The possibility of
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Cs(2D, γ)
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La reaction is investigated for the E2 transition between J
π
= 7/2+ of
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CsD2 and 7/2+ of the
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La ground state.
Subject
General Physics and Astronomy
Cited by
2 articles.
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