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具有磁场的颗粒膜中自旋转移矩诱导的增强磁电阻。

Enhanced magnetoresistance induced by spin transfer torque in granular films with a magnetic field.

作者信息

Chen T Y, Huang S X, Chien C L, Stiles M D

机构信息

Department of Physics and Astronomy, The Johns Hopkins University, Baltimore, Maryland 21218, USA.

出版信息

Phys Rev Lett. 2006 May 26;96(20):207203. doi: 10.1103/PhysRevLett.96.207203.

Abstract

Spin-transfer torques (STT) provide a mechanism to alter the magnetic configurations of magnetic heterostructures, a result previously only achieved by an external magnetic field. In granular solids, we demonstrate a new form of STT effect that can be exploited to induce a large spin disorder when combined with a large magnetic field. We have obtained a very large magnetoresistance effect in excess of 400% at 4.2 K in a large magnetic field, the largest ever reported in any metallic systems. The STT characteristics of granular solids differ significantly from those of multilayers, showing no STT effect at low magnetic fields but prominent STT effects at high fields.

摘要

自旋转移力矩(STT)提供了一种改变磁性异质结构磁构型的机制,这一结果此前仅通过外部磁场才能实现。在颗粒状固体中,我们证明了一种新型的STT效应,当与强磁场结合时,这种效应可用于诱导产生大的自旋无序。在强磁场下,我们于4.2 K时获得了超过400%的极大磁阻效应,这是在任何金属系统中报道过的最大值。颗粒状固体的STT特性与多层膜的特性显著不同,在低磁场下无STT效应,但在高磁场下有显著的STT效应。

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