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Real-space renormalization group study of the anisotropic antiferromagnetic Heisenberg model of spin S = 1 on a honeycomb lattice

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Заглавие Real-space renormalization group study of the anisotropic antiferromagnetic Heisenberg model of spin S = 1 on a honeycomb lattice
 
Автор Boyarchenkov, A. S.
Ovchinnikov, A. S.
Bostrem, I. G.
Baranov, N. V.
Hosokoshi, Y.
Inoue, K.
 
Тематика ANISOTROPY
ANTIFERROMAGNETISM
GROUND STATE
HONEYCOMB STRUCTURES
MAGNETIZATION
MATHEMATICAL MODELS
PHASE DIAGRAMS
TEMPERATURE MEASUREMENT
ANTIFERROMAGNETIC EXCHANGE
HEISENBERG MODEL
HONEYCOMB LATTICE
RENORMALIZATION
CRYSTAL LATTICES
 
Описание The real-space renormalization group approach is applied to study critical temperatures of a system consisting of interacting spin chains of spin S = 1, with an inner antiferromagnetic exchange, which form a honeycomb crystal lattice. Using the anisotropic Heisenberg model we calculate the critical temperature as a function of the anisotropic parameter and the ratio of the interchain and intrachain interactions. A comparison our results with those obtained from RSRG calculations for the same model of spin-1/2 on a square lattice is given. © 2005 IOP Publishing Ltd.
 
Дата 2024-04-24T12:38:23Z
2024-04-24T12:38:23Z
2005
 
Тип Article
Journal article (info:eu-repo/semantics/article)
info:eu-repo/semantics/submittedVersion
 
Идентификатор Boyarchenkov, A. S., Ovchinnikov, A. S., Bostrem, I. G., Baranov, N. V., Hosokoshi, Y., & Inoue, K. (2005). Real-space renormalization group study of the anisotropic antiferromagnetic Heisenberg model of spinS= 1 on a honeycomb lattice. Journal of Physics. Condensed Matter: An Institute of Physics Journal, 17(12), 1769–1780. doi:10.1088/0953-8984/17/12/001
0953-8984
Final
All Open Access; Green Open Access
https://arxiv.org/pdf/cond-mat/0503131
http://elar.urfu.ru/handle/10995/132573
10.1088/0953-8984/17/12/001
 
Язык en
 
Права Open access (info:eu-repo/semantics/openAccess)
 
Формат application/pdf
 
Издатель IOP Publishing
 
Источник Journal of Physics: Condensed Matter
Journal of Physics Condensed Matter