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Comparative study on the strain-dependent mechanical and electronic properties of Nb3Al and Nb3Sn
Author(s) -
Zhao Liu,
Biao Wang
Publication year - 2021
Publication title -
materials research express
Language(s) - English
Resource type - Journals
ISSN - 2053-1591
DOI - 10.1088/2053-1591/ac1966
Subject(s) - superconductivity , materials science , hydrostatic pressure , strain (injury) , condensed matter physics , niobium , ultimate tensile strength , hydrostatic equilibrium , deformation (meteorology) , work (physics) , phonon , stress (linguistics) , composite material , metallurgy , thermodynamics , physics , medicine , quantum mechanics , linguistics , philosophy
Nb 3 Al and Nb 3 Sn are important A15 compounds due to their good superconducting properties in high magnetic field. The strain coming from multiple sources would result in the degradation of superconducting performance for both of them. Extensive experimental studies have found that Nb 3 Sn has higher strain sensitivity than Nb 3 Al. However, most of the previous theoretical works focus on the effect of compressive hydrostatic pressure, which doesn’t reflect the actual working condition. In this work, first-principles calculations were done to investigate the mechanical behaviors of the two materials under the three crystallographic uniaxial tensile loadings. Determined from the stress-strain relations, the theoretical strength of Nb 3 Al is found to be slightly higher than that of Nb 3 Sn, which is validated by the energy-strain curve and the corresponding phonon instability. Electronic analyses show that the property difference of the two materials is attributed to their different bonding states and strain sensitivities. The present work unveils why the superconductivity of Nb 3 Sn is more sensitive to strain than Nb 3 Al on the microscopic level.

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