Some Magnetic Properties and Magnetocaloric Effects in the High-Temperature Antiferromagnet YbCoC2

Author:

Salamatin Denis Alexandrovich12ORCID,Krasnorussky Vladimir Nikolaevich1ORCID,Magnitskaya Mariya Viktorovna1ORCID,Semeno Alexei Valeryevich13ORCID,Bokov Alexander Vladimirovich1ORCID,Velichkov Atanas24,Surowiec Zbigniew25,Tsvyashchenko Anatoly Vasilyevich1ORCID

Affiliation:

1. Vereshchagin Institute for High Pressure Physics, RAS, 108840 Moscow, Russia

2. Joint Institute for Nuclear Research, 141980 Dubna, Russia

3. Prokhorov General Physics Institute, RAS, 119991 Moscow, Russia

4. Institute for Nuclear Research and Nuclear Energy, 1784 Sofia, Bulgaria

5. Institute of Physics, M. Curie-Sklodowska University, 20-031 Lublin, Poland

Abstract

The YbCoC2 compound, which crystallizes in a base-centered orthorhombic unit cell in the Amm2 space group CeNiC2 structure, is unique among Yb-based compounds due to the highest magnetic ordering temperature of TN=27 K. Magnetization measurements have made it possible to plot the H-T magnetic phase diagram and determine the magnetocaloric effect of this recently discovered high-temperature heavy-fermion compound, YbCoC2. YbCoC2 undergoes spin transformation to the spin-polarized state through a metamagnetic transition in an external magnetic field. The transition is found to be of the first order. The dependencies of magnetic entropy change ΔSm(T)—have segments with positive and negative magnetocaloric effects for ΔH≤6 T. For ΔH=9 T, the magnetocaloric effect becomes positive, with a maximum ΔSm(T) value of 4.1 J (kg K)−1 at TN and a refrigerant capacity value of 56.6 J kg−1.

Funder

Russian Science Foundation

Publisher

MDPI AG

Subject

Materials Chemistry,Chemistry (miscellaneous),Electronic, Optical and Magnetic Materials

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