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Possible Spin Pumping Effects on Spin Torque Induced Magnetization Switching in Magnetic Tunneling Junctions

机译:磁隧道结中可能的自旋泵浦效应对自旋转矩感应的磁化转换的影响

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摘要

Dependence of spin torque induced magnetization switching upon interfacial insulating layers properties of magnetic tunneling junctions (MTJ) are studied. For the same magnetic properties and patterning geometric dimensions, changes in MTJ interfacial insulating layers properties reveal interesting magnetization switching behaviors. These behaviors cannot be explained by conventional Landau-Lifshitz-Gilbert equation with a spin torque term and an intrinsic ferromagnetic relaxation damping. However the magnetization switching dynamics can be understood through assumption of spin pumping effects in magnetic tunneling junctions. This is not only important for fundamental understanding of spin and electronic transport in MTJ but also important for practical trade-offs between critical switching current and MTJ resistance for spin torque random access memory.
机译:研究了自旋转矩引起的磁化转换对磁性隧道结(MTJ)界面绝缘层性能的依赖性。对于相同的磁性能和构图几何尺寸,MTJ界面绝缘层性能的变化显示出有趣的磁化开关行为。这些行为不能用具有旋转转矩项和固有铁磁弛豫阻尼的常规Landau-Lifshitz-Gilbert方程来解释。但是,可以通过假设磁性隧道结中的自旋泵浦效应来理解磁化切换动力学。这不仅对于基本了解MTJ中的自旋和电子传输很重要,而且对于自旋扭矩随机存取存储器的临界开关电流和MTJ电阻之间的实际折衷也很重要。

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