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Uniform spin wave modes in antiferromagnetic nanoparticles with uncompensated moments

机译:具有无补偿矩的反铁磁纳米粒子中的均匀自旋波模式

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摘要

In magnetic nanoparticles the uniform precession (q = 0 spin wave) mode gives the predominant contribution to the magnetic excitations. We have calculated the energy of the uniform mode in antiferromagnetic nanoparticles with uncompensated magnetic moments, using the coherent potential approximation. In the presence of uncompensated moments, an antiferromagnetic nanoparticle must be considered as a kind of a ferrimagnet. Two magnetic anisotropy terms are considered, a planar term confining the spins to the basal plane, and an axial term determining an easy axis in this plane. Excitation energies are calculated for various combinations of these two anisotropy terms, ranging from the simple uniaxial case to the planar case with a strong out-of-plane anisotropy. In the simple uniaxial case, the uncompensated moment has a large influence on the excitation energy, but in the planar case it is much less important. The calculations explain recent neutron scattering measurements on nanoparticles of antiferromagnetic alpha-Fe2O3 and NiO.
机译:在磁性纳米粒子中,一致的进动(q = 0自旋波)模式对磁激发起主要作用。我们已经使用相干势近似法计算了具有未补偿磁矩的反铁磁纳米粒子的均匀模式能量。在存在未补偿的力矩的情况下,必须将反铁磁性纳米粒子视为一种铁磁体。考虑了两个磁各向异性项,一个平面项将自旋限制在基平面上,一个轴向项确定了该平面中的易轴。对于这两个各向异性项的各种组合,计算出激发能,范围从简单的单轴情况到具有强烈的面外各向异性的平面情况。在简单的单轴情况下,未补偿的力矩对激励能量有很大的影响,但是在平面情况下,它的重要性要小得多。这些计算解释了最近对反铁磁α-Fe2O3和NiO的纳米粒子进行的中子散射测量。

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