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JOURNALS // Fizika Tverdogo Tela // Archive

Fizika Tverdogo Tela, 2019 Volume 61, Issue 12, Pages 2471–2476 (Mi ftt8596)

This article is cited in 9 papers

Metals

Structural, magnetic, and thermal properties of the compound Tb$_{0.8}$Sm$_{0.2}$Fe$_{2}$ with a Laves phase structure

T. A. Aleroevaab, I. S. Tereshinaa, T. P. Kaminskayaa, Z. S. Umkhaevabc, A. V. Filimonovd, P. Yu. Vaninad, O. A. Alekseevad, A. S. Ilyushinac

a Lomonosov Moscow State University
b Chechen State University, Grozny
c Complex Research Institute named after Kh. I. Ibragimov, Russian Academy of Sciences, Groznyi
d Peter the Great St. Petersburg Polytechnic University

Abstract: A comprehensive study of the structure, phase composition, features of the surface topology, the magnetostrictive and thermal properties of the Tb$_{0.8}$Sm$_{0.2}$Fe$_{2}$ compound are performed. The structural features were established at micro- and nanoscale levels, and information on the magnetic domains structure at room temperature was obtained. The results of X-ray diffraction studies in a wide temperature range of 90–760 K, including Curie temperature, are represented. Experimental data on thermal expansion and magnetostriction in magnetic fields up to 12 kOe were obtained and analyzed. Anomalies were found in the thermal expansion curves $\Delta l/l (T)$ and magnetostriction $\lambda (T)$ at low temperatures. It is established that in compound under study the value of the magnetostrictive effect remains almost unchanged in a wide temperature range 100–300 K in fields up to 3.5 kOe.

Keywords: intermetallic compound, structure, thermal expansion, magnetostriction.

Received: 09.07.2019
Revised: 09.07.2019
Accepted: 15.07.2019

DOI: 10.21883/FTT.2019.12.48603.551


 English version:
Physics of the Solid State, 2019, 61:12, 2503–2508

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© Steklov Math. Inst. of RAS, 2024