Crystallographic, magnetic, electrical transport and thermodynamic properties of pseudo-binary Nd7Ni2Pd compound have been studied using temperature-dependent x-ray powder diffraction and physical property measurements. Compared to the ferromagnetic parent Nd7Pd3, the ground state of Nd7Ni2Pd is antiferromagnetic, and it exhibits strong metamagnetism. The measurements indicate two antiferromagnetic transitions in fields less than 8 kOe: a second-order paramagnetic to antiferromagnetic at T-N2 = 29 K and a weak first-order antiferromagnetic to antiferromagnetic transition at T-N1 = 24.5 K. The compound becomes ferromagnetic in fields of 8 kOe and higher with T-C = 30 K. Temperature dependence of lattice parameters is anomalous, most prominently in the basal plane at similar to 30 K; however, there is no detectable structural distortion or clear volume discontinuity around 25 K, suggesting a significant weakening of the first-order transition when compared to the binary Nd7Pd3.

Magnetic and transport behaviors of non-centrosymmetric Nd7Ni2Pd

Provino A;Manfrinetti P;
2020

Abstract

Crystallographic, magnetic, electrical transport and thermodynamic properties of pseudo-binary Nd7Ni2Pd compound have been studied using temperature-dependent x-ray powder diffraction and physical property measurements. Compared to the ferromagnetic parent Nd7Pd3, the ground state of Nd7Ni2Pd is antiferromagnetic, and it exhibits strong metamagnetism. The measurements indicate two antiferromagnetic transitions in fields less than 8 kOe: a second-order paramagnetic to antiferromagnetic at T-N2 = 29 K and a weak first-order antiferromagnetic to antiferromagnetic transition at T-N1 = 24.5 K. The compound becomes ferromagnetic in fields of 8 kOe and higher with T-C = 30 K. Temperature dependence of lattice parameters is anomalous, most prominently in the basal plane at similar to 30 K; however, there is no detectable structural distortion or clear volume discontinuity around 25 K, suggesting a significant weakening of the first-order transition when compared to the binary Nd7Pd3.
2020
Istituto Superconduttori, materiali innovativi e dispositivi - SPIN
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/376474
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