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Parallel ferromagnetic resonance and spin-wave excitation in exchange-biased NiFe/IrMn bilayers

机译:交换偏置的NiFe / IrMn双层膜中的平行铁磁共振和自旋波激发

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Ferromagnetic Resonance study of sputtered Ru(7 nm)/NiFe(t_(FM))/IrMn(6 nm)/Ru(5 nm) exchange-biased bilayers at X and Q-band microwave frequencies reveals the excitation of spin-wave and NiFe resonance modes. Angular variations of the in-plane resonance fields of spin-wave and NiFe resonance modes show the effect of the unidirectional anisotropy, which is about twice larger for the spin-wave mode due to spin pinning at the NiFe/IrMn interface. At Q-band frequency the angular variations of in-plane resonance fields also reveal the symmetry of a uniaxial anisotropy. A modified theoretical model which also includes the contribution of a rotatable anisotropy provides a good description of the experimental results.
机译:在X和Q波段微波频率下溅射Ru(7 nm)/ NiFe(t_(FM))/ IrMn(6 nm)/ Ru(5 nm)交换偏置的双层的铁磁共振研究揭示了自旋波和NiFe共振模式。自旋波和NiFe共振模式的面内共振场的角度变化显示了单向各向异性的影响,由于NiFe / IrMn界面处的自旋钉扎,自旋波模式的各向异性约大两倍。在Q波段频率下,平面内共振场的角度变化也揭示了单轴各向异性的对称性。修改后的理论模型还包括可旋转各向异性的贡献,为实验结果提供了很好的描述。

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