论文标题
轨道转移扭矩驱动的垂直磁化的无场切换
Orbit-transfer torque driven field-free switching of perpendicular magnetization
论文作者
论文摘要
电力控制对垂直磁化(PM)的逆转对于低功率磁随机访问记忆(MRAM)的高密度整合至关重要。尽管旋转转移扭矩(STT)和自旋轨道扭矩(SOT)技术已被用来切换具有垂直磁各向异性的自由层的磁化,但前者的耐力直接通过连接处高电流密度有限,而后者则需要外部磁场或无效的配置,以破坏对称性。在这里,我们提出并实现轨道转移扭矩(OTT),即使用轨道磁矩在磁化强度上施加扭矩,因此在没有外部磁场的情况下为电流驱动的PM反向反转展示了新的策略。轨道磁矩的垂直极化是由于存在非零浆果曲率偶极子而在几层WTE2中产生的直流电流,并且可以通过改变电流极性来切换极化方向。在此原理的指导下,我们构建了WTE2/FE3Gete2异质结构,其中实现了PM的无磁场确定性切换。
The reversal of perpendicular magnetization (PM) by electric control is crucial for high-density integration of low-power magnetic random-access memory (MRAM). Although the spin-transfer torque (STT) and spin-orbit torque (SOT) technologies have been used to switch the magnetization of a free layer with perpendicular magnetic anisotropy, the former has limited endurance because of the high current density directly through the junction, while the latter requires an external magnetic field or unconventional configuration to break the symmetry. Here we propose and realize the orbit-transfer torque (OTT), that is, exerting torque on the magnetization using the orbital magnetic moments, and thus demonstrate a new strategy for current-driven PM reversal without external magnetic field. The perpendicular polarization of orbital magnetic moments is generated by a direct current in a few-layer WTe2 due to the existence of nonzero Berry curvature dipole, and the polarization direction can be switched by changing the current polarity. Guided by this principle, we construct the WTe2/Fe3GeTe2 heterostructures, where the OTT driven field-free deterministic switching of PM is achieved.