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- W2024255278 abstract "Abstract A15-Nb3Ge, Nb3Sn and V3Si samples were irradiated with fast heavy ions (12.5–20 MeV 16O, 20–30 MeV 23S) at low temperatures (Tirr ≲ 30 K). Critical temperatures Te residual resistivities ρ0 and the slopes B'c2: = dBc2/dT (T = Tc) of the upper-rmcritical-field-Bc2 vs temperature-curve were measured in situ as a function of fluence φt and annealing temperature TA in the course of an isochronal recovery program. Lattice parameters a0 and ϱ (T) curves were obtained after room temperature annealing. The coefficient γ of the electronic specific heat was determined from the measured B'c2 and ρ0 data. These results and various correlations of the measured parameters are discussed in terms of different models of defect influence on superconducting or normal state properties. In the range where comparisons can be made, these “universal” correlations are not very sensitive to the special type of projectile. Independent of the compound under consideration the Tc and ρ0 changes can be scaled by the mean energy transfer per lattice atom E . Assuming antisite disorder as the predominant defect structure, Tc, ρ0 and γ variations are analyzed in terms of the Bragg-Williams long range order parameter S. Furthermore, the threshold energy for an increase of resistivity was obtained from low temperature electron irradiations. Resistivity annealing measurements following heavy ion irradiation are compared with those following low temperature reactor neutron (Tirr ≈ 4.6 K) and electron (E = 2 MeV, Tirr ≲ 30 K) irradiation. Finally the merits and limitations of ion simulation for neutron irradiation effects in A15-materials are discussed." @default.
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- W2024255278 date "1982-07-01" @default.
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- W2024255278 title "Ion and neutron damage studies of A15-superconductors" @default.
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- W2024255278 doi "https://doi.org/10.1016/0022-3115(82)90530-x" @default.
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