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Ni-based superconductor: Heusler compound ZrNi2Ga

Jürgen Winterlik, Gerhard H. Fecher, Claudia Felser, Martin Jourdan, Kai Grube, Frédéric Hardy, Hilbert von Löhneysen, K. L. Holman, R. J. Cava

DOI 10.1103/PhysRevB.78.184506 · Physical Review B

T1

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Abstract

This work reports on the Heusler superconductor ZrNi2Ga. Compared to other nickel-based superconductors with Heusler structure, ZrNi2Ga exhibits a relatively high superconducting transition temperature of Tc=2.9 K and an upper critical field of μ0Hc2=1.5 T. Electronic structure calculations show that this relatively high Tc is caused by a Van Hove singularity, which leads to an enhanced density of states at the Fermi energy N(ϵF). The Van Hove singularity originates from a higher-order valence instability at the L point in the electronic structure. The enhanced N(ϵF) was confirmed by specific-heat and susceptibility measurements. Although many Heusler compounds are ferromagnetic, our measurements of ZrNi2Ga indicate a paramagnetic state above Tc and could not reveal any traces of magnetic order down to temperatures of at least 0.35 K. We investigated in detail the superconducting state with specific-heat, magnetization, and resistivity measurements. The resulting data show the typical behavior of a conventional weakly coupled BCS (s-wave) superconductor.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
ZrNi2Ga

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2.9Pressure not reportedunknown
ZrNi2Ga

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2.87Pressure not reportedmidpoint
ZrNi2Ga

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2.8Pressure not reportedonset
ZrNi2Ga

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2.83Pressure not reportedunknown
YPd2Sn

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4.9Pressure not reportedunknown
NbNi2Sn

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3.4Pressure not reportedunknown

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