Bachir Ouari
University of Perpignan
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Publication
Featured researches published by Bachir Ouari.
Journal of Applied Physics | 2006
Bachir Ouari; Y.P. Kalmykov
Thermally induced relaxation of the magnetization of single domain ferromagnetic particles with triaxial (orthorhombic) anisotropy in the presence of a uniform external magnetic field H0 is considered in the context of Brown’s continuous diffusion model. Simple analytic equations, which allow one to describe qualitatively the field effects in the relaxation behavior of the system for wide ranges of the field strength and damping parameters are derived. It is shown that these formulas are in complete agreement with the exact matrix continued fraction solution of the infinite hierarchy of linear differential-recurrence equations for the statistical moments, which governs the magnetization dynamics of an individual particle (this hierarchy is derived by averaging the underlying stochastic Landau-Lifshitz-Gilbert equation over its realizations). It is also demonstrated that in strong fields the longitudinal relaxation of the magnetization is essentially modified by the contribution of the high-frequency “intr...
Journal of Applied Physics | 2013
Bachir Ouari; Serguey V. Titov; Halim El Mrabti; Yuri P. Kalmykov
The nonlinear ac susceptibility and dynamic magnetic hysteresis (DMH) of a single domain ferromagnetic particle with biaxial anisotropy subjected to both external ac and dc fields of arbitrary strength and orientation are treated via Browns continuous diffusions model [W. F. Brown, Jr., Phys. Rev. 130, 1677 (1963)] of magnetization orientations. The DMH loops and nonlinear ac susceptibility strongly depend on the dc and ac field strengths, the polar angle between the easy axis of the particle, the external field vectors, temperature, and damping. In contrast to uniaxial particles, the nonlinear ac stationary response and DMH strongly depend on the azimuthal direction of the ac field and the biaxiality parameter Δ.
Journal of Applied Physics | 2016
Yuri P. Kalmykov; Bachir Ouari; Serguey V. Titov
The nonlinear ac stationary response of antiferromagnetic nanoparticles subjected to both external ac and dc fields of arbitrary strength and orientation is investigated using Browns continuous diffusion model. The nonlinear complex susceptibility and dynamic magnetic hysteresis (DMH) loops of an individual antiferromagnetic nanoparticle are evaluated and compared with the linear regime for extensive ranges of the anisotropy, the ac and dc magnetic fields, damping, and the specific antiferromagnetic parameter. It is shown that the shape and area of the DMH loops of antiferromagnetic particles are substantially altered by applying a dc field that permits tuning of the specific magnetic power loss in the nanoparticles.
Journal of Molecular Structure | 2004
Najeh Rekik; Bachir Ouari; Paul Blaise; Olivier Henri-Rousseau
Journal of Magnetism and Magnetic Materials | 2005
Yuri P. Kalmykov; W. T. Coffey; Bachir Ouari; S. V. Titov
Physical Review B | 2005
Yuri P. Kalmykov; Bachir Ouari
Physical Review B | 2010
Bachir Ouari; Safoin Aktaou; Yuri P. Kalmykov
Physica A-statistical Mechanics and Its Applications | 2006
W. T. Coffey; Y.P. Kalmykov; Bachir Ouari; S. V. Titov
Physical Review B | 2011
Bachir Ouari; Yuri P. Kalmykov
Bulletin of the American Physical Society | 2006
Yuri P. Kalmykov; W. T. Coffey; Bachir Ouari; S. V. Titov