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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Electronic and magnetic properties of a ferromagnetic cobalt surface by adsorbing ultrathin films of tetracyanoethylene
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Electronic and magnetic properties of a ferromagnetic cobalt surface by adsorbing ultrathin films of tetracyanoethylene

机译:通过吸附四环乙烯的超薄薄膜的铁磁钴表面的电子和磁性

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摘要

Ultrathin films of tetracyanoethylene (TCNE) on Co(100) were investigated by means of spin-integrated and spin-resolved photoemission spectroscopy ((sp-)UPS), X-ray photoemission spectroscopy (XPS), near edge X-ray absorption fine-structure spectroscopy (NEXAFS), and X-ray magnetic circular dichroism (XMCD). We found a coverage-dependent modulation of the interface dipole and a switching between a metallic and a resistive spin filtering at the interface triggered by two distinct adsorption geometries of TCNE. The strongest hybridization and spin structure modifications are found at low coverage with a face-on adsorption geometry indicating changes in the distance between the surface Co atoms beneath. TCNE has the potential to manipulate the magnetic moments in the Co surface itself, including the possibility of magnetic hardening effects. In summary, the system TCNE/Co offers an experimentally rather easy and controllable way to build up a stable molecular platform stabilizing the reactive ferromagnetic Co surface and customizing the electronic and magnetic properties of the resulting spinterface simultaneously. This makes this system very attractive for spintronic applications as an alternative, less reactive but highly spin polarized foundation beside graphene-based systems.
机译:通过旋转集成和自旋分辨的光曝光光谱((SP-)UPS),X射线照相扫描光谱(XPS),近边缘X射线吸收细分,研究了CO(100)的超氰基乙烯(TCNE)的超薄薄膜 - 结构光谱(Nexafs)和X射线磁性圆形二色(XMCD)。我们发现接口偶极子的覆盖依赖性调制以及在由TCNE的两个不同吸附几何形状触发的界面处的金属和电阻自旋滤波之间的切换。在低覆盖率下发现最强的杂交和旋转结构修饰,具有面对面的吸附几何形状,其指示下面的表面CO原子之间的距离变化。 TCNE有可能操纵CO表面本身中的磁矩,包括磁性硬化效应的可能性。总之,系统TCNE / CO提供一种实验更容易可控的方式,可以构建稳定的分子平台,稳定反应性铁磁COS表面,并同时定制所得倒数的电子和磁性。这使得该系统非常有吸引力,即用于替代的基于石墨烯的系统旁边的替代,较少的反应,但高自旋极化基础。

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