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Applied magnetic field and stress induced anisotropy dependence of energy for oriented ferromagnetic thick films

机译:定向铁磁厚膜的外加磁场和应力引起的能量各向异性

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The energy of perfectly oriented thick ferromagnetic films at different applied magnetic field and stress was studied using classical model of Heisenberg Hamiltonian. For the values of parameters used in this report, the energy required to orient the film with 1000 layers in 41.4° or 57.6° directions becomes minimum at applied magnetic fields of Hout/ω = 4.8 or Hin/ω = 4.8, respectively. The film can be easily oriented in 172° direction by applying the external stress Ks/ω = 3.6 perpendicular to the film plane, for the values of parameters used in this report. These final results mainly depend on the values of other parameters used for calculations. The energy becomes minimum and maximum at almost the same values of oriented angle (θ), in plane magnetic field, out of plane magnetic field and stress for both sc(001) and bcc(001 lattice types. But the values of energies corresponding to maxima and minima are slightly different for the sc(001) and bcc(001) lattices.
机译:使用海森堡哈密顿量经典模型研究了在不同施加磁场和应力下完美取向的厚铁磁薄膜的能量。对于此报告中使用的参数值,在施加的磁场分别为Hout /ω= 4.8或Hin /ω= 4.8时,将具有1000个层的薄膜定向在41.4°或57.6°方向上所需的能量变得最小。对于此报告中使用的参数值,通过施加垂直于薄膜平面的外部应力Ks /ω= 3.6,可以轻松地将薄膜沿172°方向定向。这些最终结果主要取决于用于计算的其他参数的值。对于sc(001)和bcc(001)晶格类型,在平面磁场,平面磁场,平面磁场和应力几乎相同的取向角(θ)值处,能量变为最小值和最大值。对于sc(001)和bcc(001)晶格,最大值和最小值略有不同。

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