...
首页> 外文期刊>Science Advances >Correlation-driven eightfold magnetic anisotropy in a two-dimensional oxide monolayer
【24h】

Correlation-driven eightfold magnetic anisotropy in a two-dimensional oxide monolayer

机译:具有二维氧化物单层中的相关驱动的八倍磁各向异性

获取原文

摘要

Engineering magnetic anisotropy in two-dimensional systems has enormous scientific and technological implications. The uniaxial anisotropy universally exhibited by two-dimensional magnets has only two stable spin directions, demanding 180° spin switching between states. We demonstrate a previously unobserved eightfold anisotropy in magnetic SrRuOsub3/sub monolayers by inducing a spin reorientation in (SrRuOsub3/sub)sub1/sub/(SrTiOsub3/sub) subN/sub superlattices, in which the magnetic easy axis of Ru spins is transformed from uniaxial 〈001〉 direction ( N 3) to eightfold 〈111〉 directions ( N ≥ 3). This eightfold anisotropy enables 71° and 109° spin switching in SrRuOsub3/sub monolayers, analogous to 71° and 109° polarization switching in ferroelectric BiFeOsub3/sub. First-principle calculations reveal that increasing the SrTiOsub3/sub layer thickness induces an emergent correlation-driven orbital ordering, tuning spin-orbit interactions and reorienting the SrRuOsub3/sub monolayer easy axis. Our work demonstrates that correlation effects can be exploited to substantially change spin-orbit interactions, stabilizing unprecedented properties in two-dimensional magnets and opening rich opportunities for low-power, multistate device applications.
机译:二维系统中的工程磁各向异性具有巨大的科学和技术影响。由二维磁体普遍呈现的单轴各向异性仅具有两个稳定的旋转方向,要求状态之间的旋转切换180°。我们通过在(Srruo 3 1 /(srtio 中,通过诱导旋转重新定位,在磁性srruo 3 单层中展示先前未被观察到的八个八个各向异性。 1 3 n 超晶格,其中ru旋转的磁容易轴从单轴<001>方向(n <3)到八十倍111>方向(n≥3)。该八个八个各向异性可使Srruo 3 单层的71°和109°旋转切换,类似于铁电BIFEO 3 的71°和109°偏振切换。第一原理计算揭示了增加SRTIO 3 层厚度引起紧急相关驱动的轨道排序,调整旋转轨道相互作用并重新定向SRRUO 3 单层易轴。我们的作品表明,可以利用相关效果以大大改变自旋轨道相互作用,稳定在二维磁体中的前所未有的性能,并为低功耗,多态器件应用开辟丰富的机会。

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