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Monte Carlo study of phase transitions and magnetic properties of LaMnO3


 
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1. Title Title of document Monte Carlo study of phase transitions and magnetic properties of LaMnO3
 
2. Creator Author's name, affiliation, country S. Naji; LMPHE (URAC 12), Département de physique, Faculté des sciences, Université Mohammed V-Agdal, B.P. 1014, Rabat Department of Physics, faculty of sciences, IBB university , Ibb , Yemen; Morocco
 
2. Creator Author's name, affiliation, country A. Benyoussef; LMPHE (URAC 12), Département de physique, Faculté des sciences, Université Mohammed V-Agdal, B.P. 1014, Rabat Hassan II Academy of Sciences and Technology, Rabat Institute of Nanomaterials and Nanotechnology, MAScIR, Rabat; Morocco
 
2. Creator Author's name, affiliation, country A. El Kenz; LMPHE (URAC 12), Département de physique, Faculté des sciences, Université Mohammed V-Agdal, B.P. 1014, Rabat; Morocco
 
2. Creator Author's name, affiliation, country H. Ez-Zahraouy; LMPHE (URAC 12), Département de physique, Faculté des sciences, Université Mohammed V-Agdal, B.P. 1014, Rabat; Morocco
 
2. Creator Author's name, affiliation, country M. Loulidi; LMPHE (URAC 12), Département de physique, Faculté des sciences, Université Mohammed V-Agdal, B.P. 1014, Rabat; Morocco
 
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4. Description Abstract On the basis of Mean Field Approximation (MFA), Monte Carlo Simulations (MCS) and ab initio calculations we have studied the phase diagrams and magnetic properties of the bulk perovskite, LaMnO3 using Ising model Hamiltonian. It is shown that the antiferromagnetic coupling between next neighbors Mn ions is reponsible for a series of magnetic phase transitions. The transition temperature and the critical exponents obtained, in the framework of Monte Carlo simulations, using the experimental values of the exchange couplings and magnetic anisotropy are in agreement with the experimental ones. The exchange couplings deduced from ab initio calculations lead, by using Monte Carlo simulations, to a quantitative agreement with the experimental transition temperatures.
 
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7. Date (YYYY-MM-DD) 19-12-2011
 
8. Type Status & genre Peer-reviewed Article
 
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9. Format File format PDF
 
10. Identifier Uniform Resource Identifier https://revues.imist.ma/index.php/MJCM/article/view/451
 
11. Source Title; vol., no. (year) Moroccan Journal of Condensed Matter; Vol 13, No 1 (2011)
 
12. Language English=en en
 
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15. Rights Copyright and permissions Copyright (c)