We analyse the magnetic phase diagram of yttrium iron garnet (YIG) at T = OK (in the MFA approximation) described by a Heisenberg Hamiltonian. There are Ave different phases and one spin-flop line. Two of these phases are of different semi-spin-glass type. In order to adequately describe them we introduce two new notions: the correlation density function and the information entropy qi the correlation density functions. The functions and their entropies are calculated by means of a Monte Carlo method. We discovered that the ferrimagnetic point of the phase diagram corresponding to real YIG falls in the area where three different phases converge. One of these phases is of semi-spin-glass type. The results obtained can shed light on the interpretation of the low-temperature properties of YIG doped with charge uncompensated ions, for example Ca2+.
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National University of Science and Technology (MISiS), MoscowNational University of Science and Technology (MISiS), Moscow
Korovushkin V.V.
Kostishin V.G.
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National University of Science and Technology (MISiS), MoscowNational University of Science and Technology (MISiS), Moscow
Kostishin V.G.
Stepovich M.A.
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Tsiolkovsky Kaluga State University, Kaluga
Plekhanov Russian University of Economics, MoscowNational University of Science and Technology (MISiS), Moscow
Stepovich M.A.
Shipko M.N.
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Plekhanov Russian University of Economics, Moscow
Lenin Ivanovo State Power Engineering University, IvanovoNational University of Science and Technology (MISiS), Moscow