首页> 外文会议> >Spin-polarized scanning tunneling spectroscopy study of epitaxial iron(001) layers on bct-manganese(001)
【24h】

Spin-polarized scanning tunneling spectroscopy study of epitaxial iron(001) layers on bct-manganese(001)

机译:bct-锰(001)上外延铁(001)层的自旋极化扫描隧道光谱研究

获取原文

摘要

In this work, the correlation between layer spacing and magnetic coupling of successive Fe layers on the bct-Mn by means of spin-polarized scanning microscopy and spectroscopy (SP-STM/STS) is studied. In ultra-high-vacuum, Fe(001) epitaxial layers are grown at room temperature (RT) on bct-Mn(001) and are deposited on a single crystalline Fe(001)-whisker. These layers show a bct structure with the same in-plane lattice constant as the substrate and the bct-Fe. With ferromagnetic Fe-coated W tips, the magnetic structures of the first to the eighth Fe layer at RT are also studied. Since the substrate Mn layers couple antiferromagnetically, the first Fe layers grown on the odd and even Mn layers show magnetic contrast. Surprisingly, the contrast is also observed between the second and first Fe layers. This means that the first Fe layer also couples antiferromagnetically with the second layer. Similar SP-STS measurements for Fe films with other thicknesses are done and results show that the first to fourth Fe layers on bct-Mn have non-collinear helical magnetic coupling. The inter-layer exchange coupling constant J/sub k/ turns out to be strongly correlated to the step height or interlayer distance d, i.e., J/sub k/<0 for d>0.155 nm and J/sub k/>0 for d<0.155 nm. Also, it is shown from SP-STS results that J/sub k2/<0 for 00 for k>5.
机译:在这项工作中,通过自旋极化扫描显微镜和光谱法(SP-STM / STS)研究了bct-Mn上相继Fe层的层间距与磁耦合之间的相关性。在超高真空中,Fe(001)外延层在室温(RT)上生长在bct-Mn(001)上,并沉积在单晶Fe(001)晶须上。这些层显示出具有与衬底和bct-Fe相同的面内晶格常数的bct结构。利用铁磁涂层的钨尖,还研究了室温下第一层至第八层铁的磁性结构。由于基底Mn层反铁磁耦合,所以在奇数和偶数Mn层上生长的第一Fe层显示出磁性对比。令人惊讶地,在第二和第一铁层之间也观察到对比度。这意味着第一铁层也与第二层反铁磁耦合。对其他厚度的Fe膜进行了类似的SP-STS测量,结果表明bct-Mn上的第一至第四Fe层具有非共线螺旋磁耦合。层间交换耦合常数J / sub k /证明与台阶高度或层间距离d密切相关,即,对于d> 0.155 nm,J / sub k / <0;对于d> 0.155 nm,J / sub k /> 0 d <0.155nm。此外,从SP-STS结果可以看出,对于0 0,表示k> 5。

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