Knight Shifts and Pauli Susceptibilities in Alkali Metals and Alloys
- 15 March 1973
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 7 (6) , 2461-2473
- https://doi.org/10.1103/physrevb.7.2461
Abstract
An expression for the contact density, or Fermi-surface electron probability density at the nucleus, is developed to first order in the pseudopotential for a metal with a spherical Fermi surface, and applied to solid alkali metals and liquid binary alkali alloys at all concentrations. The explicit orthogonalization of the pseudo-wave-functions to the ionic core states permits the use of a local empirical pseudopotential. The contact density samples the Fourier transform of the pseudopotential primarily in the region just above ; consequently the large changes in which occur upon alloying in the alkali metals are dominant over the details of the ionic environment in determining the behavior of the contact density. The calculated contact densities, when combined with measured alloy Knight shifts, imply a unique and roughly free-electron-like dependence of the Pauli electron-spin susceptibility upon the interelectron spacing in the range . The polarizability of the ions may introduce an effective value of in the range . The deduced susceptibilities are consistent with a simple picture in which the electron-ion effective masses of Na, K, Rb, and Cs are close to unity; the susceptibilities agree in this picture with a recent analysis of the observed enhancement of the Korringa constant. The calculation is in some important respects insensitive to the choice of pseudopotentials, structure factors, and core-state wave functions. The temperature dependence and change upon melting of the Knight shift are also estimated, and the extension of the calculation to other metals is briefly discussed.
Keywords
This publication has 28 references indexed in Scilit:
- Knight-Shift Calculations in Liquid MagnesiumPhysical Review B, 1971
- Pseudopotential Calculation of Knight-Shift Temperature and Volume Dependence in Liquid and Solid SodiumPhysical Review B, 1971
- Knight shifts and Pauli susceptibilities in alkali metal alloysSolid State Communications, 1970
- Temperature-Dependent Knight Shift in Cadmium: A Theoretical StudyPhysical Review B, 1969
- Knight Shifts in Liquid Alloys from the Pseudopotential FormalismPhysical Review B, 1969
- The resistivity of liquid alloysAdvances in Physics, 1967
- The theory of the electrical conductivity of liquid metalsAdvances in Physics, 1966
- Self-Consistent-Field Wave Functions for Hole States of Some Ne-Like and Ar-Like IonsPhysical Review B, 1965
- Sur le deplacement de Knight dans les alliagesJournal of Physics and Chemistry of Solids, 1959
- The Effect of Electronic Paramagnetism on Nuclear Magnetic Resonance Frequencies in MetalsPhysical Review B, 1950