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Columnar structured FePt films epitaxially grown on large lattice mismatched intermediate layer

机译:在大晶格失配中间层上外延生长的柱状结构FePt膜

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摘要

The microstructure and magnetic properties of the FePt films grown on large mismatched ZrN (15.7%) intermediate layer were investigated. With using ZrN intermediate layer, FePt 10 nm films exhibited (001) texture except for some weaker FePt (110) texture. Good epitaxial relationships of FePt (001) <100>//ZrN (001) <100>//TiN (001) <100> among FePt and ZrN/TiN were revealed from the transmission electron microscopy (TEM) results. As compared with TiN intermediate layer, although FePt-SiO2-C films grown on ZrN/TiN intermediate layer showed isotropic magnetic properties, the large interfacial energy and lattice mismatch between FePt and ZrN would lead to form columnar structural FePt films with smaller grain size and improved isolation. By doping ZrN into the TiN layer, solid solution of ZrTiN was formed and the lattice constant is increased comparing with TiN and decreased comparing with ZrN. Moreover, FePt-SiO2-C films grown on TiN 2 nm-20 vol.% ZrN/TiN 3 nm intermediate layer showed an improved perpendicular magnetic anisotropy. Simultaneously, columnar structure with smaller grain size retained.
机译:研究了在大的不匹配ZrN(15.7%)中间层上生长的FePt膜的微观结构和磁性。通过使用ZrN中间层,FePt 10 nm膜表现出(001)织构,除了一些较弱的FePt(110)织构。从透射电子显微镜(TEM)的结果可知,FePt与ZrN / TiN之间的FePt(001)<100> // ZrN(001)<100> // TiN(001)<100>具有良好的外延关系。与TiN中间层相比,虽然在ZrN / TiN中间层上生长的FePt-SiO2-C膜表现出各向同性的磁性能,但FePt和ZrN之间的界面能大和晶格失配会形成具有较小晶粒尺寸和尺寸的柱状结构FePt膜。改善隔离度。通过将ZrN掺杂到TiN层中,形成ZrTiN的固溶体,并且晶格常数与TiN相比增加,而与ZrN相比减少。此外,在TiN 2 nm-20体积%ZrN / TiN 3 nm中间层上生长的FePt-SiO2-C膜显示出改善的垂直磁各向异性。同时,保留了具有较小晶粒尺寸的柱状结构。

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