Proton nuclear magnetic resonance study of crystal field levels in praseodymium hydrides
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference11 articles.
1. Proton spin-lattice relaxation mechanisms and the metal-insulator transition in cerium hydrides
2. Neutron scattering and crystal fields in Pr-hydrides
3. Nuclear Magnetic Resonance Evidence for the Occurrence of an Ordered Structure in the La—H System Near LaH2.65 at 250 K
4. Deuterium superlattice formation in lanthanum trideuterides: The nuclear magnetic resonance evidence
5. Paramagnetic impurity effects in NMR determinations of hydrogen diffusion and electronic structure in metal hydrides.Gd3+in YH2and LaH2.25
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1. Electronic band structure calculation and nuclear spin-lattice relaxation in chromium hydrides;Journal of Alloys and Compounds;2002-06
2. Competing magnetic anisotropies in the mixed rare-earth Laves hydrides;Physical Review B;2001-08-13
3. mu+SR frequency shifts in the van-Vleck paramagnet PrIn3;Hyperfine Interactions;1997
4. Crystal electric field next to a hydrogen-like interstitial— µ+ in PrNi5;Zeitschrift für Physik B Condensed Matter;1995-03
5. Chapter 137 Hydrogen in rare-earth metals, including RH2+x phases;Handbook on the Physics and Chemistry of Rare Earths Volume 20;1995
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