首页> 外国专利> Switching of perpendicularly magnetized nanomagnets with spin-orbit torques in the absence of external magnetic fields

Switching of perpendicularly magnetized nanomagnets with spin-orbit torques in the absence of external magnetic fields

机译:在没有外部磁场的情况下将垂直磁化的纳米磁磁磁磁磁性切换

摘要

A base element for switching a magnetization state of a nanomagnet includes a heavy-metal nanostrip having a surface. A ferromagnetic nanomagnet is disposed adjacent to the surface. The ferromagnetic nanomagnet includes a shape having a long axis and a short axis. The ferromagnetic nanomagnet has both a perpendicular-to-the-plane anisotropy Hkz and an in-plane anisotropy Hkx and the ferromagnetic nanomagnet has a first magnetization equilibrium state and a second magnetization equilibrium state. The first magnetization equilibrium state or the second magnetization equilibrium state is settable by a flow of electrical charge through the heavy-metal nanostrip. A direction of flow of the electrical charge through the heavy-metal nanostrip includes an angle ξ with respect to the short axis of the nanomagnet.
机译:用于切换纳米磁体的磁化状态的基部元件包括具有表面的重金属纳米污丝。铁磁性纳米磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁磁石设置在表面附近。铁磁纳米磁磁体包括具有长轴和短轴的形状。铁磁纳米镁镁具有垂直于平面各向异性H Kz ,并且内部各向异性H Kx ,并且铁磁纳米镁镁具有第一磁化平衡状态和a第二磁化均衡状态。第一磁化平衡状态或第二磁化平衡状态可通过通过重金属纳米玻璃的电荷流动来设置。电荷通过重金属纳米玻璃的流动方向包括相对于纳米镁镁的短轴的角度ξ。

著录项

  • 公开/公告号US11004588B2

    专利类型

  • 公开/公告日2021-05-11

    原文格式PDF

  • 申请/专利权人 UNIVERSITY OF ROCHESTER;

    申请/专利号US201916710531

  • 申请日2019-12-11

  • 分类号H01F10/32;G11C11/16;H03K19/18;H01L43;G11C11/18;H01L43/06;H01L43/10;

  • 国家 US

  • 入库时间 2022-08-24 18:37:46

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