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Asymmetric intermixing in a Co-Al thin film system: An investigation using coaxial impact collision ion scattering spectroscopy

机译:Co-Al薄膜系统中的不对称混合:使用同轴碰撞碰撞离子散射光谱法的研究

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摘要

Surface structure evolution during atomic deposition in a Co-Al system was investigated using coaxial impact collision ion scattering spectroscopy (CAICISS). Half monolayer of Al and Co atoms were deposited on Co(0001) and Al(001) single crystal surfaces, respectively, in an ultrahigh-vacuum environment. CAICISS analysis of the deposited surface revealed an asymmetric interfacial reaction, as predicted by previous molecular dynamics simulations. Al atoms deposited on a Co substrate are placed on the surface with no interatomic intermixing. In contrast, significant surface intermixing with the deposited Co atoms occurs on the Al(001) substrate, resulting in the formation of a CoAl intermetallic surface layer of B2 structure. These asymmetric features would be important to the understanding of the structural evolution of thin film multilayers.
机译:使用同轴碰撞碰撞离子散射光谱法(CAICISS)研究了Co-Al系统中原子沉积过程中的表面结构演变。在超高真空环境中,Al和Co原子的半单分子层分别沉积在Co(0001)和Al(001)单晶表面上。如先前的分子动力学模拟所预测,对沉积表面的CAICISS分析显示出不对称界面反应。沉积在Co基体上的Al原子没有原子间混合地放置在表面上。相反,在Al(001)衬底上发生了与沉积的Co原子的明显表面混合,从而形成了B2结构的CoAl金属间表面层。这些不对称特征对于理解薄膜多层的结构演变将是重要的。

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