Thermodynamics of a Magnetic Transition in MnS2 at High Pressures

The behavior of the specific heat of MnS 2 at high pressures has been studied. A significant increase in the transition temperature T N to an antiferromagnetic state with the pressure from 48.2 K at atmospheric pressure to 76 K at a pressure of 5.3 GPa has been revealed. The initial pressure derivat...

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Veröffentlicht in:JETP letters 2018-03, Vol.107 (5), p.311-314
Hauptverfasser: Sidorov, V. A., Guo, Jing, Sun, Liling, Brazhkin, V. V.
Format: Artikel
Sprache:eng
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Zusammenfassung:The behavior of the specific heat of MnS 2 at high pressures has been studied. A significant increase in the transition temperature T N to an antiferromagnetic state with the pressure from 48.2 K at atmospheric pressure to 76 K at a pressure of 5.3 GPa has been revealed. The initial pressure derivative is dT N / dP = 4.83 K/GPa. It has been found that the parameter α = d (log T N )/ d (log V ) = −6.6 ± 0.1 is significantly different from the value α = −10/3 ≈ −3.3 (Bloch relation), which is typical of numerous antiferromagnetic insulators—transition- metal oxides and fluorides. The volume jump at the magnetic transition point has been estimated. The necessity of direct dilatometric measurements of the volume has been justified.
ISSN:0021-3640
1090-6487
DOI:10.1134/S0021364018050132