Superconducting properties and electronic structure of CuAl2-type transition-metal zirconide Fe1-xNixZr2
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info:eu-repo/semantics/openAccessTarih
2024Yazar
Shimada, RyunosukeWatanabe, Yuto
Tortora, Lorenzo
Tomassucci, Giovanni
Hacısalihoğlu, Muammer Yasin
Arima, Hiroto
Yamashita, Aichi
Miura, Akira
Moriyoshi, Chikako
Saini, Naurang L.
Mizuguchi, Yoshikazu
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Shimada, R., Watanabe, Y., Tortora, L., Tomassucci, G., Hacisalihoglu, M. Y., Arima, H., Yamashita, A., Miura, A., Moriyoshi, C., Saini, N. L., & Mizuguchi, Y. (2024). Superconducting Properties and Electronic Structure of CuAl2-Type Transition-Metal Zirconide Fe1-Ni Zr2. Journal of Alloys and Compounds, 1010, 177442. https://doi.org/10.1016/j.jallcom.2024.177442Özet
CuAl2-type transition-metal (Tr) zirconides are a superconductor family, and the Tr-site element substitution largely modifies its transition temperature (Tc). Here, we synthesized polycrystalline samples of Fe1-xNixZr2 by arc melting. The crystal structure and the superconducting properties were studied through synchrotron X-ray diffraction, magnetic susceptibility, electrical resistivity, and specific heat measurements. Bulk superconductivity was observed for 0.4 ≤ x ≤ 0.8, and the highest Tc of 2.8 K was observed for x = 0.6. The obtained superconductivity phase diagram exhibits a dome-shaped trend, which is similar to unconventional superconductors, where magnetic fluctuations are essential for superconductivity. In addition, from the c/a lattice constant ratio analysis, we show the possible relationship between the suppression of bulk superconductivity in the Ni-rich compositions and a collapsed tetragonal transition.