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      Supershells in Metal Clusters: Self-Consistent Calculations and their Semiclassical Interpretation

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          Abstract

          To understand the electronic shell- and supershell-structure in large metal clusters we have performed self-consistent calculations in the homogeneous, spherical jellium model for a variety of different materials. A scaling analysis of the results reveals a surprisingly simple dependence of the supershells on the jellium density. It is shown how this can be understood in the framework of a periodic-orbit-expansion by analytically extending the well-known semiclassical treatment of a spherical cavity to more realistic potentials.

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          Work function of small metal particles: Self-consistent spherical jellium-background model

          W. Ekardt (1984)
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            Hyperfine Populations Prior to Muon Capture

            It is shown that the 1S level hyperfine populations prior to muon capture will be statistical when either target or beam are unpolarised independent of the atomic level at which the hyperfine interaction becomes appreciable. This assertion holds in the absence of magnetic transitions during the cascade and is true because of minimal polarisation after atomic capture and selective feeding during the cascade.
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              Distribution of eigenfrequencies for the wave equation in a finite domain: III. Eigenfrequency density oscillations

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                Author and article information

                Journal
                05 June 1996
                Article
                10.1103/PhysRevLett.76.2678
                cond-mat/9606023
                2f2417b3-1a0a-4046-9f21-943d6b842f6a
                History
                Custom metadata
                MPIF-95.247
                Phys.Rev.Lett. 76, 2678 (1996)
                4 pages, revtex, 3 eps figures included, for additional information see http://radix2.mpi-stuttgart.mpg.de/koch/Diss/
                cond-mat

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