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- W2010246102 abstract "Abstract Changes of electrical resistivity p and critical temperature Tc were measured in the A-15 compound V3Si irradiated at low temperature (T ⋍ 21 K) by electrons of energy E. An energy range (0.20 MeV < E < 0.35 MeV) is observed where the resistivity increases, whereas the critical temperature remains constant. This result can be interpreted within the framework of the linear chain model of Labbe-Friedel as the sign that the atoms Si start to be displaced at E=0.20 MeV leading to an increase in resistivity, the critical temperature being only affected when the atoms V are displaced at E=0.35 MeV. Comparison of experimental values of damage rates determined either by p or by T c with calculated theoretical cross sections of V and Si in V3Si add some support to this interpretation. Displacement threshold energies were deduced from this analysis to be equal to (25±1) eV for Si and to (25±1) eV for V. Specific Frenkel pair resistivities were estimated as PFPSi=(4.2±0.5 μΩ.cm/at.% and PFPV=(27±3) μΏ.cm/at..." @default.
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- W2010246102 date "1985-01-01" @default.
- W2010246102 modified "2023-09-26" @default.
- W2010246102 title "Displacement threshold energies in the A-15 compound V3Si" @default.
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- W2010246102 doi "https://doi.org/10.1080/00337578608207493" @default.
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