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1.
On the possible separation of the phase enriched with Nb in superconducting intermetallic $Nb_3Sn$ irradiated with fast protons / Vasil'ev, A L (Kurchatov Inst., Moscow) ; Ballarino, A (CERN) ; Bottura, L (CERN) ; Gavrilkin, S Yu (Lebedev Inst.) ; Degtyarenko, P N (Kurchatov Inst., Moscow) ; Karateev, I A (Kurchatov Inst., Moscow) ; Kruglov, V S (Kurchatov Inst., Moscow) ; Latushkin, S T (Kurchatov Inst., Moscow) ; Lunev, A V (Kurchatov Inst., Moscow) ; Ryazanov, A I (Kurchatov Inst., Moscow) et al.
The results of the study of magnetization and dynamic magnetic susceptibility are correlated with changes in the microstructure of superconducting intermetallic Nb$_{3}$Sn plates irradiated at the Kurchatov Institute cyclotron with fast protons with an energy of 12.8 MeV to a fluence of 1 · 1018 cm−2. The dependence of the superconducting transition temperature on the total irradiation dose is determined. [...]
2017 - 4 p. - Published in : Bull. Lebedev Phys. Inst. 44 (2017) 118-121
2.
Effect of irradiation with 32-MeV protons on critical parameters of modern Nb$_{3}$Sn-based superconducting composite wires / Degtyarenko, P N (Kurchatov Inst., Moscow ; ITAE, Moscow) ; Ballarino, A (CERN) ; Bottura, L (CERN) ; Gavrilkin, S Yu (Lebedev Inst.) ; Flükiger, R (CERN) ; Kruglov, V S (Kurchatov Inst., Moscow ; Moscow Phys. Eng. Inst.) ; Latushkin, S T (Kurchatov Inst., Moscow) ; Ryazanov, A I (Kurchatov Inst., Moscow ; Moscow Phys. Eng. Inst.) ; Scheuerlein, C (CERN) ; Semenov, E V (Kurchatov Inst., Moscow) et al.
Vibrating-sample magnetometry techniques has been used for investigation of the electrophysical characteristics of several types of modern commercial multistrand composite wires based on Nb$_{3}$Sn superconducting compound at temperatures that were measured 4.2, 7, and 12 K in magnetic fields up to 8 T before and after irradiation of the samples by fast (32-MeV) protons to fluences values 3 × 10$^{16}$, 1 × 10$^{17}$, 3 × 10$^{17}$, and 1 × 10$^{18}$ cm$^{–2}$. All samples irradiated to fluences values up to 1 × 10$^{17}$ cm$^{–2}$ exhibited growth of the critical current density, which was most sharply pronounced in strong magnetic fields at lower temperatures. [...]
2017 - 3 p. - Published in : Tech. Phys. Lett. 43 (2017) 574-576

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