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The correlation between superconductivity and ferromagnetism in superconductor-ferromagnet heterostructures

机译:超导体-铁磁体异质结构中超导性与铁磁性的相关性

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摘要

The correlation between superconductivity and ferromagnetism through a magnetic coupling at the interface between the heterostructure constructed by high temperature superconductor and ferromagnet layers was theoretically investigated. The investigation results represent a fact that the superconductor and the ferromagnet affect mutually and the increase of the magnetic coupling will simultaneously suppress the ferromagnetism and the superconductivity. The dominant mechanism of the result is owing to the carrier exchange between both layers determined by the magnetic coupling strength and each layer’s orbital energy. The increase in the number of carriers will enhance the superconductivity as well as the ferromagnetism but with too many of carriers in the ferromagnet, the ferromagnetism will be suppressed by over spin screening.
机译:从理论上研究了高温超导体与铁磁层构成的异质结构之间的界面处的磁耦合引起的超导性与铁磁的相关性。研究结果表明,超导体和铁磁体相互影响,磁耦合的增加将同时抑制铁磁性和超导性。结果的主要机制是由于两层之间的载流子交换取决于磁耦合强度和每一层的轨道能量。载流子数量的增加将增强超导性以及铁磁性,但是如果铁磁体中载流子过多,则铁磁性将被过度自旋筛选所抑制。

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