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Interface control of the magnetic chirality in CoFeB/MgO heterostructures with heavy-metal underlayers

机译:CoFeB / MgO异质结构与重金属底层的界面手性控制

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Recent advances in the understanding of spin orbital effects in ultrathin magnetic heterostructures have opened new paradigms to control magnetic moments electrically. The Dzyaloshinskii–Moriya interaction (DMI) is said to play a key role in forming a Néel-type domain wall that can be driven by the spin Hall torque. Here we show that the strength and sign of the DMI can be changed by modifying the adjacent heavy-metal underlayer (X) in perpendicularly magnetized X/ CoFeB / MgO heterostructures. The sense of rotation of a domain wall spiral is reversed when the underlayer is changed from Hf , Ta to W and the strength of DMI varies as the filling of 5 d orbitals, or the electronegativity, of the heavy-metal layer changes. The DMI can even be tuned by adding nitrogen to the underlayer, thus allowing interface engineering of the magnetic texture in ultrathin magnetic heterostructures.
机译:在超薄磁性异质结构中对自旋轨道效应的理解方面的最新进展开辟了新的范式来电气控制磁矩。据说Dzyaloshinskii-Moriya相互作用(DMI)在形成Néel型畴壁中起关键作用,该壁可以由自旋霍尔转矩驱动。在这里,我们表明可以通过修改垂直磁化的X / CoFeB / MgO异质结构中的相邻重金属底层(X)来更改DMI的强度和符号。当底层从Hf,Ta变为W时,畴壁螺旋的旋转方向会反转,并且DMI的强度会随着重金属层的5 d轨道填充或电负性的变化而变化。甚至可以通过向底层添加氮来调整DMI,从而允许在超薄磁性异质结构中进行磁织构的界面工程。

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