论文标题
垂直MTJS的动态天空介导的切换:用热噪声缩放到20 nm
Dynamic Skyrmion-Mediated Switching of Perpendicular MTJs: Scaling to 20 nm with Thermal Noise
论文作者
论文摘要
在受约束几何形状中创建和消灭天空的一种方法是使用电压控制的磁各向异性(VCMA)[1,2,3]。先前的研究表明,可以通过在跨颗粒跨颗粒的室温和各种粒子变化的情况下创建和随后消灭中间的天际状态[4]来实现稳健的电压控制的铁磁控制逆转状态的逆转逆转状态[4]。但是,当缩放到20 nm时,热噪声可以通过随机移动核心向纳米结构的边界进行随机移动来消灭天空。在这项工作中,我们研究了不同维度的三个P-MTJ,尤其是100nm,50nm和20 nm的横向尺寸,并随着尺寸降低而研究开关行为的变化。特别是,我们的重点是研究在存在热扰动的情况下,在何种程度上,可以在何种程度上使用低于50nm的横向尺寸。
One method of creating and annihilating skyrmions in confined geometries is to use Voltage-Controlled Magnetic Anisotropy (VCMA) [1, 2, 3]. Previous study shows that robust voltage controlled ferromagnetic reversal from up to down state in the soft layer of a perpendicular Magnetic Tunnel Junction (p-MTJ) can be achieved by creating and subsequently annihilating an intermediate skyrmion state [4] in the presence of room temperature thermal noise and anisotropy variation across grains [4]. However, when scaling to 20 nm, thermal noise can annihilate the skyrmions, for example, by randomly moving the core towards the boundary of the nanostructure. In this work, we study three p-MTJs of different dimensions, particularly lateral dimensions of 100nm, 50nm and 20 nm and investigate the change in switching behavior as the dimension is decreased. Particularly, our focus is to investigate to what extent skyrmion mediated switching scheme can be employed below ~50nm lateral dimensions in the presence of thermal perturbation.