Study of 4f hybridization in CeNiX with X=SnδGe1−δ, 0≤δ≤1
Author:
Publisher
Elsevier BV
Subject
Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Reference17 articles.
1. Formation of an anisotropic energy gap in the valence-fluctuating system of CeNiSn
2. Evidence of pseudogap formation in a new valence-fluctuating compound: CeRhSb
3. Anomalous properties of Ce-Cu- and Yb-Cu-based compounds
4. Anisotropic suppression of the energy gap in CeNiSn by high magnetic fields
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1. Electronic structure of Ce1−xMxO2 , where M = Rh, Pd, by MBJLDA calculations;Solid State Sciences;2018-12
2. Cerium intermetallics with TiNiSi-type structure;Zeitschrift für Naturforschung B;2016-06-14
3. The electronic structure of CeNiGe3 and YNiGe3 superconductors by ab initio calculations;Solid State Communications;2014-02
4. Electronic structure of the heavy-fermion superconductor Ce2Ni3Ge5 and its reference Ce2Ni3Si5 compound by ab initio calculations;Journal of Alloys and Compounds;2013-05
5. High-field magnetostriction in CeNiSn1−xGex (0≤x≤1) strongly correlated systems;Journal of Magnetism and Magnetic Materials;2010-05
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