Journal ArticleDOI
Mean-field theory for critical phenomena in bilayer systems.
Xiao Hu,Yoshiyuki Kawazoe +1 more
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This article is published in Physical Review B.The article was published on 1994-11-01. It has received 13 citations till now. The article focuses on the topics: Critical phenomena & Mean field theory.read more
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Size dependence of nanostructures: Impact of bond order deficiency
Chang Q. Sun,Chang Q. Sun +1 more
TL;DR: The BOLS correlation mechanism has been initiated and intensively verified as discussed by the authors, which has enabled the tunability of a variety of properties of a nanosolid to be universally reconciled to the effect of bond order deficiency of atoms at sites surrounding defects or near the surface edges of the nano-material.
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Curie temperature suppression of ferromagnetic nanosolids
TL;DR: Sun et al. as discussed by the authors developed an atomistic model for the Curie temperature suppression of ferromagnetic nanosolids based on the recent bond-order-bond-lengthbond strength correlation mechanism and the criterion of thermal-vibration-exchangeinteraction energy equilibrium.
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Phase transition in Heisenberg magnetic films
TL;DR: In this article, the phase transitions of a spin-S Heisenberg thin film were examined using the high-temperature series expansions technique extrapolated with Pade approximants method.
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Critical behaviour of magnetic thin film with Heisenberg spin-S model
R. Masrour,M. Hamedoun,K. Bouslykhane,A. Hourmatallah,A. Hourmatallah,N. Benzakour,A. Benyoussef +6 more
TL;DR: In this article, the magnetic properties of a ferromagnetic thin film of face centered cubic lattice with Heisenberg spin-S were examined using the high-temperature series expansions technique extrapolated with Pade approximations method.
Journal ArticleDOI
Coupling and surface effects in magnetic thin films
TL;DR: In this article, the phase transition and the critical phenomena of a ferromagnetic thin film through three models: Heisenberg, XY and Ising were analyzed using the high-temperature series expansions technique.