X-ray absorption and optical spectroscopy studies of(Mg1−xAlx)B2
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.68.092505/fulltext
Reference24 articles.
1. Superconductivity at 39 K in magnesium diboride
2. Beyond Eliashberg Superconductivity inMgB2: Anharmonicity, Two-Phonon Scattering, and Multiple Gaps
3. Role of Boronp-Electrons and Holes in SuperconductingMgB2, and Other Diborides: A Fully Relaxed, Full-Potential Electronic Structure Study
4. Two-Dimensional σ-Hole Systems in Boron Layers: A First-Principles Study on Mg1-xNaxB2and Mg1-xAlxB2
5. The origin of the anomalous superconducting properties of MgB2
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1. Electronic Structure of Single-Crystalline MgxAl1−xB2 Probed by X-ray Diffraction Multipole Refinements and Polarization-Dependent X-ray Absorption Spectroscopy;Journal of the Physical Society of Japan;2014-02-15
2. Electron-phonon coupling and two-band superconductivity of Al- and C-dopedMgB2;Physical Review B;2010-12-10
3. Magnesium Diboride MgB2: A Simple Compound with Important Physical Properties;Low-Dimensional Solids;2010-08-25
4. First principles study of the Be–C co-doped MgB2system;Journal of Semiconductors;2009-11
5. Isotope effect on theE2gphonon and mesoscopic phase separation near the electronic topological transition inMg1−xAlxB2;Physical Review B;2009-07-24
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