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首页> 外文期刊>Physical Review, B. Condensed Matter >Morphological instability of Cu vicinal surfaces during step-flow growth - art. no. 165401
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Morphological instability of Cu vicinal surfaces during step-flow growth - art. no. 165401

机译:步进流动生长过程中Cu邻近表面的形态不稳定性-艺术。没有。 165401

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摘要

The step-flow growth of Cu on vicinal Cu surfaces, Cu (1 1 17) and Cu (0 2 24), is investigated by variable-temperature scanning-tunneling microscopy. These vicinal surfaces have identical terrace widths but their step orientation differs by 45 degrees. Upon growth, the surfaces develop a step-meandering instability, resulting in an in-plane patterning of the surfaces with a temperature- and flux-dependent characteristic wavelength lambda (u). The instability-induced structural patterns depend on the step orientation and are the manifestation of the Bales-Zangwill instability in both cases. The selected characteristic wavelength is interpreted as the interplay of a destabilizing effect due to the presence of the Ehrlich-Schwobel barrier and a stabilizing mechanism presumably due to "diffusion noise." As a result, lambda (u) is proportional to the one-dimensional nucleation length l(n) along a straight step, involving the diffusion barrier along both the (110) and (100) step orientations on Cu(001). [References: 35]
机译:通过变温扫描隧道显微镜研究了在邻近的​​Cu表面Cu(1 1 17)和Cu(0 2 24)上Cu的逐步流动生长。这些相邻的表面具有相同的平台宽度,但其台阶方向相差45度。在生长时,表面会出现阶跃弯曲的不稳定性,从而导致表面具有与温度和流量相关的特征波长λ(u)的平面内构图。由不稳定性引起的结构模式取决于台阶方向,并且在两种情况下都是Bales-Zangwill不稳定性的表现。所选择的特征波长被解释为由于存在埃里希-舒沃贝尔势垒而引起的去稳定作用与可能由于“扩散噪声”而引起的稳定机制之间的相互作用。结果,λ(u)与沿直线台阶的一维成核长度l(n)成正比,包括沿Cu(001)的(110)和(100)台阶取向的扩散势垒。 [参考:35]

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