Ab initiocalculation of the temperature dependence of the electric field gradient in Be
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.23.3823/fulltext
Reference21 articles.
1. Universal Correlation of Electronic and Ionic Field Gradients in Noncubic Metals
2. Sign and magnitude of the quadrupole interaction ofCd111in noncubic metals: Universal correlation of ionic and electronic field gradients
3. Effect of the Atomic Core on the Nuclear Quadrupole Coupling
4. Temperature dependence of the electric field gradient in noncubic metals
5. Temperature Dependence of Electric Field Gradients in Noncubic Metals
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1. Temperature dependence of electric-field gradient in Zn and Cd: Replacing the T3/2 law;Physical Review B;2024-02-13
2. A full-potential LAPW study of structural and electronic properties of beryllium;Journal of Physics F: Metal Physics;1987-04
3. A Thomas-Fermi model for the electric field gradient in hcp-metals and numerical calculations for zinc;Zeitschrift f�r Physik B Condensed Matter;1986-03
4. Comparison of nuclear quadrupole interaction in beryllium metal by augmented-plane-wave and orthogonalized-plane-wave procedures;Physical Review B;1984-03-15
5. Systematics of electric field gradients in metals;Hyperfine Interactions;1983-12
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