Symmetry of the emergent inductance tensor exhibited by magnetic textures

Soju Furuta, Wataru Koshibae, Fumitaka Kagawa
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Abstract

Metals hosting gradually varying spatial magnetic textures are attracting attention as a new class of inductors. Under the application of an alternating current, the spin-transfer-torque effect induces oscillating dynamics of the magnetic texture, which subsequently yields the spin-motive force as a back action, resulting in an inductive voltage response. In general, a second-order tensor representing a material’s response can have an off-diagonal component. However, it is unclear what symmetries the emergent inductance tensor has and also which magnetic textures can exhibit a transverse inductance response. Here, we reveal both analytically and numerically that the emergent inductance tensor should be a symmetric tensor in the so-called adiabatic limit. By considering this symmetric tensor in terms of symmetry operations that a magnetic texture has, we further characterize the magnetic textures in which the transverse inductance response can appear. This finding provides a basis for exploring the transverse response of emergent inductors, which has yet to be discovered.

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磁性纹理表现出的新兴电感张量对称性
作为一种新型电感器,具有逐渐变化的空间磁性纹理的金属正引起人们的关注。在交流电的作用下,自旋传递扭矩效应会引起磁性纹理的振荡动态,随后产生自旋驱动力作为反作用力,从而产生感应电压响应。一般来说,代表材料响应的二阶张量可以有一个非对角分量。然而,目前还不清楚新出现的电感张量具有哪些对称性,也不清楚哪些磁性纹理可以表现出横向电感响应。在此,我们通过分析和数值计算发现,在所谓的绝热极限中,新兴电感张量应该是一个对称张量。通过根据磁纹理所具有的对称操作来考虑这种对称张量,我们进一步确定了横向电感响应可能出现的磁纹理的特征。这一发现为探索新兴电感器的横向响应提供了基础,而新兴电感器尚未被发现。
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