An extensive analysis of high-precision electrical resistivity (ρ) data taken on Fe- and Co- based metallic glass wires over the temperature range 10 K≤ T ≤ 300 K and discussion of the results, so obtained, in terms of the existing theoretical models identifies enhanced electron-electron interaction (EEI), weak localization (WL) and electron-magnon (EM) scattering as the main mechanisms governing the temperature dependence of ρ in these systems and determines their relative magnitudes accurately. Out of the inelastic processes that destroy phase coherence, inelastic electron-phonon scattering turns out to be the most effective one and its dephasing action persists to temperatures as high as 300 K. While EEI and WL effe...
The results of electrical resistivity ρ(T) measurements on Fe-rich Fe-Zr glasses in a wide temp...
In metallic thin films, the screening of Coulomb interactions is less efficient than in bulk metals,...
The temperature dependence of resistivity has been measured for metallic glasses Zr(100-x)Co(x) (x =...
An extensive analysis of high-precision electrical resistivity (ρ) data taken on Fe- and Co- ba...
The purpose of this study is to investigate the conduction electrons' interaction mechanisms over th...
Electrical resistivity (ρ) measurements have been performed in various temperature ranges on di...
Measurements of the electrical resistivity of thin potassium wires at temperatures near 1 K have rev...
The results of electrical resistivity (ρ) measurements performed on amorphous Fe90-xCoxZr10 all...
Measurements of the electrical resistivity of thin potassium wires at temperatures near 1 K have rev...
Measurements of the electrical resistivity of thin potassium wires at temperatures near 1 K have rev...
Measurements of the electrical resistivity of thin potassium wires at temperatures near 1 K have rev...
The validity of the theories of quantum corrections to the electrical conductivity, namely weak loca...
X-ray diffraction patterns of melt-spun Fe-Cu-Nb-Si-B (FINEMET-type) alloys reveal that crystallites...
The results of electrical resistivity ρ(T) measurements on Fe-rich Fe-Zr glasses in a wide temp...
X-ray diffraction patterns of melt-spun Fe-Cu-Nb-Si-B (FINEMET-type) alloys reveal that crystallites...
The results of electrical resistivity ρ(T) measurements on Fe-rich Fe-Zr glasses in a wide temp...
In metallic thin films, the screening of Coulomb interactions is less efficient than in bulk metals,...
The temperature dependence of resistivity has been measured for metallic glasses Zr(100-x)Co(x) (x =...
An extensive analysis of high-precision electrical resistivity (ρ) data taken on Fe- and Co- ba...
The purpose of this study is to investigate the conduction electrons' interaction mechanisms over th...
Electrical resistivity (ρ) measurements have been performed in various temperature ranges on di...
Measurements of the electrical resistivity of thin potassium wires at temperatures near 1 K have rev...
The results of electrical resistivity (ρ) measurements performed on amorphous Fe90-xCoxZr10 all...
Measurements of the electrical resistivity of thin potassium wires at temperatures near 1 K have rev...
Measurements of the electrical resistivity of thin potassium wires at temperatures near 1 K have rev...
Measurements of the electrical resistivity of thin potassium wires at temperatures near 1 K have rev...
The validity of the theories of quantum corrections to the electrical conductivity, namely weak loca...
X-ray diffraction patterns of melt-spun Fe-Cu-Nb-Si-B (FINEMET-type) alloys reveal that crystallites...
The results of electrical resistivity ρ(T) measurements on Fe-rich Fe-Zr glasses in a wide temp...
X-ray diffraction patterns of melt-spun Fe-Cu-Nb-Si-B (FINEMET-type) alloys reveal that crystallites...
The results of electrical resistivity ρ(T) measurements on Fe-rich Fe-Zr glasses in a wide temp...
In metallic thin films, the screening of Coulomb interactions is less efficient than in bulk metals,...
The temperature dependence of resistivity has been measured for metallic glasses Zr(100-x)Co(x) (x =...