Magnetic control of superconducting heterostructures using compensated antiferromagnets

Lina G. Johnsen, Sol H. Jacobsen, J. Linder
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引用次数: 11

Abstract

Due to the lack of a net magnetization both at the interface and in the bulk, antiferromagnets with compensated interfaces may appear incapable of influencing the phase transition in an adjacent superconductor via the spin degree of freedom. We here demonstrate that such an assertion is incorrect by showing that proximity-coupling a compensated antiferromagnetic layer to a superconductor-ferromagnet heterostructure introduces the possibility of controlling the superconducting phase transition. The superconducting critical temperature can in fact be modulated by rotating the magnetization of the single ferromagnetic layer within the plane of the interface, although the system is invariant under rotations of the magnetization in the absence of the antiferromagnetic layer. Moreover, we predict that the superconducting phase transition can trigger a reorientation of the ground state magnetization.
利用补偿反铁磁体对超导异质结构进行磁控制
由于在界面和体中都缺乏净磁化,具有补偿界面的反铁磁体可能无法通过自旋自由度影响相邻超导体中的相变。我们在这里通过展示补偿反铁磁层与超导体铁磁异质结构的近似耦合引入了控制超导相变的可能性来证明这种断言是不正确的。超导临界温度实际上可以通过在界面平面内旋转单个铁磁层的磁化来调节,尽管在没有反铁磁层的情况下,系统在磁化强度的旋转下是不变的。此外,我们预测超导相变可以触发基态磁化的重新取向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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