...
首页> 外文期刊>AIP Advances >Current-driven domain wall motion based memory devices: Application to a ratchet ferromagnetic strip
【24h】

Current-driven domain wall motion based memory devices: Application to a ratchet ferromagnetic strip

机译:基于电流驱动的畴壁运动的存储设备:应用于棘轮铁磁条

获取原文
           

摘要

Ratchet memories, where perpendicular magnetocristalline anisotropy is tailored so as to precisely control the magnetic transitions, has been recently proven to be a feasible device to store and manipulate data bits. For such devices, it has been shown that the current-driven regime of domain walls can improve their performances with respect to the field-driven one. However, the relaxing time required by the traveling domain walls constitutes a certain drawback if the former regime is considered, since it results in longer device latencies. In order to speed up the bit shifting procedure, it is demonstrated here that the application of a current of inverse polarity during the DW relaxing time may reduce such latencies. The reverse current must be sufficiently high as to drive the DW to the equilibrium position faster than the anisotropy slope itself, but with an amplitude sufficiently low as to avoid DW backward shifting. Alternatively, it is possible to use such a reverse current to increase the proper range of operation for a given relaxing time, i.e., the pair of values of the current amplitude and pulse time that ensures single DW jumps for a certain latency time.
机译:棘轮存储器最近被证明是一种用于存储和操作数据位的可行设备,在棘轮存储器中调整了垂直磁磁各向异性,以精确控制磁跃迁。对于这样的设备,已经表明,相对于现场驱动的领域,电流驱动的畴壁机制可以改善其性能。但是,如果考虑前一种方案,则行进畴壁所需的弛豫时间构成了一定的缺点,因为这会导致更长的设备等待时间。为了加快移位过程,在此证明,在DW弛豫时间内施加反极性电流可以减少这种等待时间。反向电流必须足够高,以使DW比各向异性斜率本身更快地驱动到平衡位置,但其幅度必须足够低,以避免DW向后移动。或者,可以使用这种反向电流来增加给定松弛时间的适当工作范围,即确保一定延迟时间的单个DW跳变的一对电流幅度和脉冲时间值。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号