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首页> 外文期刊>Journal of Applied Physics >Microstructure and magnetism in amorphous rare‐earth–transition‐metal thin films. I. Microstructure
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Microstructure and magnetism in amorphous rare‐earth–transition‐metal thin films. I. Microstructure

机译:非晶态稀土过渡金属薄膜的微观结构和磁性。一,微观结构

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A microscopic examination of vapor‐ or sputter‐deposited amorphous rare‐earth–transition‐metal thin films reveals that they possess anisotropic microstructure. The morphology of the structure is similar in all of the films. It consists of small (50–250 Å in diameter) rod‐shaped regions of high density that are surrounded by a network of less‐dense material (10–25 Å thickness). The column axes are mutually parallel and are oriented at an angle β that is described by the relationship: tanβ= (1/2)  tanα, where α is the angle of incidence of the vapor beam, measured with respect to the substrate normal. The columnar structure is formed during deposition by self‐shadowing of the incident atoms by the atoms in the growing film. The columnar structure persists when multiple or distributed vapor sources are used to deposit the film. The structure is stable upon heating to temperaures in excess of the crystallization temperature of the amorphous deposits. Vapor deposition at large α leads to the formation of rowlike column aggregates in a direction perpendicular to the plane of incidence.
机译:在气相或溅射沉积的非晶态稀土过渡金属薄膜的显微镜检查表明,它们具有各向异性的微观结构。在所有薄膜中,结构的形态都相似。它由高密度的小(直径为50–250Å)杆状区域组成,周围是密度较低的材料(厚度为10–25Å)网络。列轴相互平行,并以角度β定向,该角度由以下关系描述:tanβ=(1/2)tanα,其中α是相对于基板法线测量的蒸气束的入射角。柱状结构是在沉积过程中通过生长膜中原子对入射原子的自阴影化而形成的。当使用多个或分布的蒸气源沉积膜时,柱状结构持续存在。当加热到超过非晶态沉积物的结晶温度的温度时,该结构是稳定的。大的α处的气相沉积导致在垂直于入射平面的方向上形成行状柱状聚集体。

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    《Journal of Applied Physics》 |1978年第6期|P.3430-3438|共9页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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