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Spin dynamics and frequency dependence of magnetic damping study in soft ferromagnetic FeTaC film with a stripe domain structure

机译:具有磁畴结构的软铁磁FeTaC薄膜的磁阻尼自旋动力学和频率依赖性研究

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Perpendicular magnetic anisotropy (PMA) and low magnetic damping are the key factors for the free layer magnetization switching by spin transfer torque technique in magnetic tunnel junction devices. The magnetization precessional dynamics in soft ferromagnetic FeTaC thin film with a stripe domain structure was explored in broad band frequency range by employing micro-strip ferromagnetic resonance technique. The polar angle variation of resonance field and linewidth at different frequencies have been analyzed numerically using Landau-Lifshitz-Gilbert equation by taking into account the total free energy density of the film. The numerically estimated parameters Landé g-factor, PMA constant, and effective magnetization are found to be 2.1, 2 × 105 erg/cm3 and 7145 Oe, respectively. The frequency dependence of Gilbert damping parameter (α) is evaluated by considering both intrinsic and extrinsic effects into the total linewidth analysis. The value of α is found to be 0.006 at 10 GHz and it increases monotonically with decreasing precessional frequency.
机译:垂直磁各向异性(PMA)和低磁阻尼是在磁性隧道结器件中通过自旋传递转矩技术进行自由层磁化切换的关键因素。利用微带铁磁共振技术,在宽带频率范围内研究了具有条状畴结构的软铁磁FeTaC薄膜的磁化进动动力学。考虑到薄膜的总自由能密度,使用Landau-Lifshitz-Gilbert方程数值分析了共振频率和线宽在不同频率下的极角变化。数值估算的参数Landég因子,PMA常数和有效磁化强度分别为2.1、2×105 erg / cm3和7145 Oe。吉尔伯特阻尼参数(α)的频率相关性通过在总线宽分析中考虑内在和外在影响来评估。发现α的值在10 GHz下为0.006,并且随着进动频率的降低而单调增加。

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