Please use this identifier to cite or link to this item: https://dspace.uzhnu.edu.ua/jspui/handle/lib/59492
Title: The antiferromagnetic phase transition in the layered Cu0.15Fe0.85PS3 semiconductor: experiment and DFT modelling
Authors: Pashchenko, V.
Bludov, O.
Baltrunas, D.
Mazeika, K.
Motria, S.
Мотря, С. Ф.
Glukhov, K.
Глухов, Костянтин Євгенович
Vysochanskii, Yu.
Височанський, Юліан Миронович
Keywords: metal phosphorus trichalcogenides, magnetic ordering, Mösbauer spectroscopy, phase transition, density functional theory
Issue Date: 2022
Publisher: Institute for Condensed Matter Physics
Citation: V. Pashchenko, O. Bludov, D. Ballerinas, K. Mazeika, S. Motria, K. Glukhov, Yu. Vysochanskii. The antiferromagnetic phase transition in the layered Cu0.15Fe0.85PS3 semiconductor: experiment and DFT modeling. Condensed Matter Physics, 2022, v. 25, N 4, p. 43701-1 - 43701-11.
Abstract: The experimental studies of the paramagnetic-antiferromagnetic phase transition through Mössbauer spectroscopy and measurements of temperature and field dependencies of magnetic susceptibility in the layered Cu0.15Fe0.85PS3 crystal are presented. The peculiar behavior of the magnetization — field dependence at lowtemperature region gives evidence of a weak ferromagnetism in the studied alloy. By the ab initio simulation of electronic and spin subsystems, in the framework of electron density functional theory, the peculiarities of spin ordering at low temperature as well as changes in interatomic interactions in the vicinity of the Cu substitutional atoms are analyzed. The calculated components of the electric field gradient tensor and asymmetry parameter for Fe ions are close to the ones found from Mössbauer spectra values. The Mulliken populations show that the main contribution to the ferromagnetic spin density is originated from 3𝑑-copper and 3𝑝-sulfur orbitals. The estimated total magnetic moment of the unit cell (8.543 emu/mol) is in reasonable agreement with the measured experimental value of ∼ 9 emu/mol.
Description: DOI: 10.5488/CMP.25.43701
Type: Text
Publication type: Стаття
URI: https://dspace.uzhnu.edu.ua/jspui/handle/lib/59492
ISSN: 1607-324X
Appears in Collections:Наукові публікації кафедри фізики напівпровідників

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