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This article is cited in 13 scientific papers (total in 13 papers)
Quantum effects of magnetization of an easy-axis ferromagnet with $S=1$
V. M. Kalitaa, I. M. Ivanovab, V. M. Loktevc a Institute of Physics, National Academy Sciences of Ukraine,
Kiev, Ukraine
b National Technical University of Ukraine "Kiev Polytechnic Institute", Kiev, Ukraine
c Bogoliubov Institute for Theoretical Physics, National
Academy Sciences of Ukraine, Kiev, Ukraine
Abstract:
We analyze the influence of quantum effects on magnetic properties of a strongly anisotropic easy-axis ferromagnet with single-ion anisotropy comparable to the exchange interaction of spins with $S=1$. We show that in this case, despite the quantum approach, we can apply a description inspired by the Landau theory of phase transitions. We consider two magnetization cases: by a longitudinal and by a transverse external magnetic field. We determine the critical values of the fields and find quantum corrections manifested in the so-called “shortening” of the mean spin modulus. We find that for a sufficiently large single-ion anisotropy, the angular dependence of the critical field differs from the Stoner–Wohlfarth astroid.
Keywords:
quantum phase transition, single-ion anisotropy, magnetizing easy-axis ferromagnet, critical field of remagnetization of easy-axis ferromagnet.
Received: 25.01.2012 Revised: 08.02.2012
Citation:
V. M. Kalita, I. M. Ivanova, V. M. Loktev, “Quantum effects of magnetization of an easy-axis ferromagnet with $S=1$”, TMF, 173:2 (2012), 333–352; Theoret. and Math. Phys., 173:2 (2012), 1620–1635
Linking options:
https://www.mathnet.ru/eng/tmf6964https://doi.org/10.4213/tmf6964 https://www.mathnet.ru/eng/tmf/v173/i2/p333
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Abstract page: | 602 | Full-text PDF : | 243 | References: | 104 | First page: | 24 |
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