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Structure analysis of Ni thin films epitaxially grown on bcc metal underlayers formed on MgO(100) substrates

机译:在MgO(100)基材上形成的BCC金属底层上外延生长的Ni薄膜的结构分析

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Ni thin films are prepared on Cr, V, and Nb underlayers with bcc structure formed on MgO(100) single-crystal substrates by molecular beam epitaxy. The growth behavior and the crystallographic properties are investigated by in-situ reflection high-energy electron diffraction and pole-figure X-ray diffraction. Cr(100) and V(100) single-crystal underlayers grow epitaxially on the substrates, whereas an Nb epitaxial underlayer consisting of two bcc(110) variants is formed on the MgO(100) substrate. Metastable hcp-Ni(1120) crystals nucleate on the Cr and the V underlayers, where the metastable hcp structure is stabilized through hetero- epitaxial growth. With increasing the film thickness, the hcp structure starts to transform into more stable fcc structure by atomic displacement parallel to the hcp(0001) close-packed plane. The resulting films are consisting of mixtures of hcp and fcc crystals. On the other hand, only the formation of fcc crystal is recognized for the Ni film grown on Nb(l10) underlayer.
机译:在CR,V和Nb底层上制备Ni薄膜,通过分子束外延在MgO(100)单晶基板上形成BCC结构。通过原位反射高能电子衍射和极值 - 图X射线衍射研究了生长行为和结晶特性。 Cr(100)和V(100)单晶底层在基材上外延生长,而在MgO(100)基板上形成由两个BCC(110)变体组成的Nb外延底层。亚料HCP-Ni(1120)晶体在Cr和V底层上成核,其中亚稳HCP结构通过异外生长稳定。随着膜厚的增加,HCP结构开始通过与HCP(0001)封闭平面平行的原子位移转换成更稳定的FCC结构。所得薄膜由HCP和FCC晶体的混合物组成。另一方面,仅在Nb(L10)底层上生长的Ni膜仅识别FCC晶体的形成。

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