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Thermally activated domain boundary formation on a missing row reconstructed surface: Au(110)

机译:在缺失的行重构表面上的热激活畴边界形成:Au(110)

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In this paper we describe the observation of the spontaneous, thermally activated formation of domain boundaries in the missing row reconstruction of Au(110) obtained with scanning tunneling microscopy (STM). The domain boundaries nucleate at two special sites on the surface: termination sites, where four steps annihilate in one point, and crossing sites, where two steps cross each other. In order to determine the domain boundary formation energies, we describe their length distributions by a simple theory, which accounts not only for the formation energy of the domain boundary, but also for the change in free energy of the steps in the vicinity of the boundary. An even better description is obtained by including also elastic step-step interactions. In both cases, we derive very low domain boundary energies. Combining this information with the formation energies of steps and kinks on the Au(110)-surface, obtained in previous studies, we test theoretical models of the two disordering phase transitions that this surface exhibits: decon-struction and roughening. This paper reports the last observation of a series, in which the energetics on Au(110) has been studied; we add an overview of the experimentally obtained energy values.
机译:在本文中,我们描述了通过扫描隧道显微镜(STM)获得的Au(110)缺失行重建中自发性,热激活的域边界形成的观察结果。畴边界在表面上的两个特殊位点成核:终止位点(其中四个台阶在一个点上被歼灭)和交叉位点(两个台阶彼此交叉)。为了确定畴边界形成能,我们用一个简单的理论来描述它们的长度分布,该理论不仅考虑了畴边界的形成能,还考虑了边界附近台阶的自由能的变化。 。通过还包括弹性步进相互作用,可以获得更好的描述。在这两种情况下,我们都得出非常低的畴边界能。将该信息与先前研究中获得的Au(110)表面台阶和纽结的形成能结合起来,我们测试了该表面表现出的两个无序相变的理论模型:解构和粗糙化。本文报告了该系列的最后一个观察结果,其中研究了Au(110)的能量。我们添加了实验获得的能量值的概述。

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