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LEEM investigations of BCC metals grown heteroepitaxially on sapphire

机译:leem对bcc金属的研究生长在蓝宝石上杂志

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We describe studies of-refractory metals Mo and Nb, grown heteroepitasially in the (011) orientation on sapphire (1120), using low energy electron microscopy (LEEM). A wide variety of structural and dynamical phenomena are observed and recorded as video sequences. These are organized here in five categories as follows. First are surface impurity phases identified by LEED. It is an important point, established here for Mo, that almost ideally clean surfaces with mainly single stepped terraces, can be prepared on thin films for use in surface science. Second, surface reconstruction phenomena can also be identified by diffraction. This is illustrated here by a reconstruction of the Nb surface, with two equivalent domains that form a stripe phase, owing to competing long and short range interactions. Detailed studies of nucleation, fluctuations and the equilibrium of these variants are described. The third area is surface topography, illustrated here by almost ideal stepped surfaces of Mo and Nb at high temperatures, and by nanofacetizig by step edge coalescence to form {110} facets on Nb at lower temperatures. The phase diagram for nan6faceting is discussed. Fourth are processes at the internal Al{sub}2O{sub}3-metal interface, as interfacial dislocations, misorientation steps and defects become visible in the LEEM image through the displacement fields they cause. The final category includes bulk process where the observed dynamics of threading screw and edge dislocations and accompanying slip traces reveal their release at high temperatures from Cottrell atmospheres. The kinetics are tracked as surface diffusion smooths dislocation slip traces, and the interactions among dislocations and surface steps are measured.
机译:我们描述的,难熔金属钼和Nb的研究,在蓝宝石(1120)(011)取向heteroepitasially成长,用低能电子显微镜(LEEM)。各种各样的结构和动力学现象被观察并记录为视频序列。这些在五类这里安排如下。首先是通过LEED鉴定表面杂质相。这是一个很重要的一点,这里莫建立,与主要是单阶梯式露台几乎理想的清洁表面,可在薄膜的表面科学使用准备。第二,表面重建现象也可以通过衍射鉴定。这是这里示出通过使Nb表面的重建,条件是形成条纹相两个等效结构域,由于竞争短程和长程的相互作用。成核,波动和这些变体的平衡的详细的研究中描述。第三个方面是表面形貌,通过几乎理想的在此示出在高温下台阶Mo和Nb中的表面,并在较低温度下通过nanofacetizig一步边缘聚结对Nb形式{110}面。讨论用于nan6faceting的相图。第四是在内部的Al {子} 2O {子} 3 - 金属界面过程,界面位错,晶界间角度的步骤和缺陷通过它们所造成的位移场成为LEEM图像中可见。最后一类包括本体法,其中攻螺杆和刃型位错和滑移伴随痕量的所观察到的动力学在从科特雷尔大气压高温揭示它们的释放。动力学跟踪作为表面扩散润滑肌肤位错滑移痕迹,以及位错和表面台阶之间的相互作用进行测量。

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