Predicting the galvanomagnetic coefficients of tungsten from Fermi-surface data
Tungsten crystal Fermi surface galvanomagnetic coefficients in scattering process by semiempirical scheme
SEARCH · Engineering Papers
Search indexed NASA NTRS and DOE OSTI research on propulsion, heat transfer, battery materials and energy systems. Follow report and document links to the original sources.
Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.
Tungsten crystal Fermi surface galvanomagnetic coefficients in scattering process by semiempirical scheme
Fermi surface data of alkali metals interpreted in terms of interaction between conduction electrons and ionic lattice for deducing partial wave phase shifts
Thermoelectric power and Fermi surface in silver-gold alloys
Impurity lifetime broadening due to scattering at Fermi surfaces, calculating Dingle temperature in noble metals
Alloying effect on diffusion thermopower in relation to Fermi surface variations in dilute silver-gold alloys
Fermi surface topology effects on Nernst- Ettingshausen coefficient from measurements in magnetic fields to 3.3 tesla and 1.2-4.2 K temperatures in metallic tin
Ferromagnetic Ni band structure and Fermi surface including spin-orbit and exchange interactions obtained by Mueller interpolation scheme
Field ionization at metal surfaces as rearrangement collision, considering anisotropic electron tunneling probabilities produced by Fermi surface
A series of measurements of normal state and superconducting properties were made in zero and in high magnetic fields. When these results are combined with a complete set of theoretical expressions, a number of Fermi surface parameters are found.
The empirical pseudopotential method (EPM) is used to calculate the band structure of tungsten and molybdenum. Agreement between the calculated reflectivity, density of states, density of states at the Fermi surface and location of the Fermi surface from this study and experimental measurements and previous calculations is good. Also the charge distribution shows the proper topological distribution of charge for a bcc crystal.
The electronic structure and the hole concentrations in the high Tc superconductor HgBa2CuO(4+delta) (delta = O, 1) has been investigated by employing a first principles full potential self-consistent LMTO method with the local density functional theory. The scalar relativistic effects have been considered. The hole concentrations of the Cu-d and O-p(x,y) orbitals are seen to be larger for the HgBaCuO5 system than those of the HgBaCuO4 solid. However, the van Hove singularity (vHs) induced Cu-d and O-p peak which is seen to lie comparatively away and above the Fermi level in the delta = 1 system shifts towards the Fermi level in the delta = 0 system. Thus, the superconducting behavior appears to originate from the occurrence of the vHs peak at the Fermi level. The Fermi surface nesting area in the delta = 0 compound is seen to be larger than in the delta = 1 compound. The calculation reveals that the increase in pressure on the crystal enhances the hole concentrations but without showing any optimum value, On the other hand, the vHs peak approaches to-wards the Fermi level with pressure and crosses the Fermi surface near V/Vo approximately equals 0.625 (V and Vo are the crystal volumes at high and normal pressures, respectively). Our calculated value of the bulk modulus equal to 0.626 Mbar predicts the occurrence of this crossover at about 24 GPa which is in complete agreement with the experimental value. At this pressure the compound has maximum nesting area and self-doped behavior.
Magnetic effect in finite one-dimensional model - Fermi surface of metals
Silver-gold and silver-germanium alloys tested for Fermi surface changes with alloying, using thermoelectric power measurements
Energy distribution spectrum of tungsten single crystal field emitter and shapes of Fermi surfaces
Dependence of magnetostriction coefficient for diamagnetic materials on change of Fermi surface with momentum and deformation parameter
Kjeldaas absorption edge in cryogenic potassium for shear magnetoacoustic wave propagation in spherical metallic Fermi surface with spin density wave ground state
States density in vicinity of Fermi surface obtained from values of paramagnetic susceptibility for gold-palladium alloys
Acoustic waves propagation in oblique DC magnetic fields in material with closed Fermi surface, discussing ultrasonic attenuation in metals