Journal of Alloys and Compounds2022,Vol.92410.DOI:10.1016/j.jallcom.2022.166456

Suppression of Kondo spin-fluctuations as the origin of metamagnetic transition in the new ternary intermetallic Ce3Pd2Ge7

Semeno A.V. Bogach A.V. Demishev S.V. Krasnorussky V.N. Gribanova S.V. Kalmykov K.B. Gribanov A.V.
Journal of Alloys and Compounds2022,Vol.92410.DOI:10.1016/j.jallcom.2022.166456

Suppression of Kondo spin-fluctuations as the origin of metamagnetic transition in the new ternary intermetallic Ce3Pd2Ge7

Semeno A.V. 1Bogach A.V. 1Demishev S.V. 1Krasnorussky V.N. 2Gribanova S.V. 3Kalmykov K.B. 4Gribanov A.V.4
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作者信息

  • 1. Prokhorov General Physics Institute of RAS
  • 2. Institute for High Pressure Physics RAS Kaluzhskoe Shosse
  • 3. Sechenov First Moscow State Medical University
  • 4. Department of Chemistry Moscow Lomonosov State University
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Abstract

? 2022 Elsevier B.V.The metamagnetic transition in cerium-based intermetallics is a very common intriguing phenomenon that has remained the subject of close study for several decades. We report crystal structure, magnetization and resistivity of a new ternary cerium germanide Ce3Pd2Ge7 with an orthorhombic structure of La3Co2Sn7-type (space group Cmmm, cell dimensions a = 4.3257(3), b = 26.339(2), c = 4.3594(3) ?, V = 496.69(2) ?3). Low-temperature magnetic properties are characterized by a two-step metamagnetic transition, which can be associated with two nonequivalent positions of Ce ions in the lattice. The first metamagnetic transition occurs in weak magnetic fields below T1 ≈ 11 K and then moves to higher fields when the temperature goes down (B ~ 1.5 T at T = 2 K). The second transition manifests itself below T2 ≈ 8 K as a rapid increase of magnetization, which starts from zero field and reaches saturation at fields B ≈ 0.1 T. The magnitude of each transition increases with decreasing temperature and the polarized magnetization ΔM reaches 0.13 μB/Ce and 0.08 μB/Ce upon the first and second transitions respectively. The interchange of nonmagnetic Pd and Ge ions (≈ 0.8 %) leads to the appearance of a hysteresis of metamagnetic transitions, as well as to the splitting of the field cooled (FC) and zero field cooled (ZFC) magnetization curves in hysteresis area. The dependence of the polarized magnetization ΔM on temperature which persists up to high fields as well as the continuation of the hysteresis well above the metamagnetic transition (at least up to B ~ 9 T) indicates a new type of spin-glass-like state, which is caused by the suppression of spin fluctuations and the localization of magnetic moments during the metamagnetic transition.

Key words

Chemical synthesis/Magnetic measurements/Metamagnetic transition/Rare earth alloys and compounds/Resistivity

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出版年

2022
Journal of Alloys and Compounds

Journal of Alloys and Compounds

EISCI
ISSN:0925-8388
参考文献量58
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