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Thermal stability and magnetization switching of composite free layer with perpendicular magnetic anisotropy

机译:复合自由层与垂直磁各向异性的热稳定性和磁化切换

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We present a micromagnetic study of a ferromagnetically exchange-coupled composite free layer design for perpendicular magnetic tunnel junctions. The thermal stability factor and critical switching current density depend on the exchange coupling strength and effective anisotropy ratio between the sublayers of the composite free layer. The energy barrier increases with an increase of the exchange coupling strength until it reaches a plateau in the strong-coupling limit. An optimal exchange coupling strength exists that leads to the minimal critical switching current and a significant improvement of the figure of merit defined as the ratio between the energy barrier and critical switching current. This behavior is obtained for smaller device sizes with uniform reversal and larger sizes with domain wall reversal.
机译:我们介绍了用于垂直磁隧道结的铁磁性交换耦合的复合层设计的微磁性研究。 热稳定性因子和临界开关电流密度取决于复合自由层的子层之间的交换耦合强度和有效的各向异性比。 能量屏障随着交换耦合强度的增加而增加,直到它达到强耦合极限的高原。 存在最佳的交换耦合强度,其导致最小的临界开关电流和定义的优点图的显着改善,例如能量屏障和临界开关电流之间的比率。 对于具有均匀逆转和较大尺寸的较小设备尺寸,可以获得此行为,域壁反转。

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