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首页> 外文期刊>Nature Communications >From chaos to selective ordering of vortex cores in interacting mesomagnets
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From chaos to selective ordering of vortex cores in interacting mesomagnets

机译:从相互作用到介磁中的涡旋核的有序排列

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摘要

A spin vortex consists of an in-plane curling magnetization and a small core region (-10 nm) with out-of-plane magnetization. An oscillating field or current induce gyrotropic precession of the spin vortex. Dipole–dipole and exchange coupling betweenthe interacting vortices may lead to excitation of collective modes whose frequencies depend on the core polarities. Here we demonstrate an effective method for controlling the relative core polarities in a model system of overlapping Ni80Fe20 dots. This is achieved by driving the system to a chaotic regime of continuous core reversals and subsequently relaxing the cores to steady-state motion. It is shown that any particular core polarity combination (and therefore the spectral response of the entiresystem) can be deterministically preselected by tuning the excitation frequency or external magnetic field. We anticipate that this work would benefit the future development of magnonic crystals, spin–torque oscillators, magnetic storage and logic elements.
机译:自旋涡旋由平面内的卷曲磁化强度和具有平面外磁化强度的较小芯区(-10 nm)组成。振荡场或电流引起自旋涡旋的旋进旋进。偶极子和偶极子以及相互作用的涡旋之间的交换耦合可能会导致激发集体模态,其频率取决于核心极性。在这里,我们展示了一种用于控制Ni80Fe20点重叠的模型系统中相对磁芯极性的有效方法。这是通过将系统驱动到连续的铁心反转的混乱状态,然后使铁心放松到稳态运动来实现的。结果表明,可以通过调整激励频率或外部磁场来确定性地选择任何特定的磁芯极性组合(以及整个系统的光谱响应)。我们预计这项工作将有利于镁磁晶体,自旋扭矩振荡器,磁存储和逻辑元件的未来发展。

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