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Theory of spin-coherent electrical transport through a defect spin state in a metal/insulator/ferromagnet tunnel junction undergoing ferromagnetic resonance

机译:通过金属/绝缘子/铁磁体隧道结中缺陷旋转状态通过缺陷旋转状态的自旋相干电气传输理论

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摘要

We describe the coherent dynamics of electrical transport through a localized spin-dependent state, such as is associated with a defect spin, at the interface of a ferromagnet and a nonmagnetic material during ferromagnetic resonance. As the ferromagnet magnetic moment precesses, charge carriers are dynamically spin filtered by the localized state, leading to a dynamic spin accumulation on the defect. Local effective magnetic fields modify the precession of a spin on the defect, which also modifies the time-integrated total charge current through the defect. We thus identify a form of current-detected spin resonance that reveals the local magnetic environment of a carrier spin located at a defect, and thus potentially the defect's identity.
机译:我们描述了通过局部自旋依赖性状态的电气传输的相干动态,例如与铁磁共振期间铁磁性界面和非磁性材料的缺陷旋转相关联。 作为铁磁体磁矩的精细,电荷载流子通过本地化状态滤过动态旋转,导致缺陷上的动态自旋积聚。 局部有效磁场改变旋转缺陷的旋转的动力,这也通过缺陷修改了时间集成的总电荷电流。 因此,我们识别电流检测到的旋转共振的形式,其揭示了位于缺陷的载体旋转的局部磁环境,因此可能是缺陷的身份。

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