Local electron-electron interaction strength in ferromagnetic nickel determined by spin-polarized positron annihilation

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作者
Hubert Ceeh
Josef Andreas Weber
Peter Böni
Michael Leitner
Diana Benea
Liviu Chioncel
Hubert Ebert
Jan Minár
Dieter Vollhardt
Christoph Hugenschmidt
机构
[1] Technische Universität München,Chemistry Department
[2] Lehrstuhl E21,undefined
[3] James-Franck Straße,undefined
[4] Heinz Maier-Leibnitz Zentrum (MLZ),undefined
[5] Technische Universität München,undefined
[6] University Munich,undefined
[7] Faculty of Physics,undefined
[8] Babes-Bolyai University,undefined
[9] Theoretical Physics III,undefined
[10] Center for Electronic Correlations and Magnetism,undefined
[11] Institute of Physics,undefined
[12] University of Augsburg,undefined
[13] Augsburg Center for Innovative Technologies,undefined
[14] University of Augsburg,undefined
[15] New Technologies - Research Center,undefined
[16] University of West Bohemia,undefined
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摘要
We employ a positron annihilation technique, the spin-polarized two-dimensional angular correlation of annihilation radiation (2D-ACAR), to measure the spin-difference spectra of ferromagnetic nickel. The experimental data are compared with the theoretical results obtained within a combination of the local spin density approximation (LSDA) and the many-body dynamical mean-field theory (DMFT). We find that the self-energy defining the electronic correlations in Ni leads to anisotropic contributions to the momentum distribution. By direct comparison of the theoretical and experimental results we determine the strength of the local electronic interaction U in ferromagnetic Ni as 2.0 ± 0.1 eV.
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