首页> 外文会议>Symposium Proceedings vol.849; Symposium on Kinetics-Driven Nanopatterning on Surfaces; 20041129-1202; Boston,MA(US) >Spontaneous Formation of Ridges on Patterned Mesas and Their Role in the Evolution of Step Arrays
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Spontaneous Formation of Ridges on Patterned Mesas and Their Role in the Evolution of Step Arrays

机译:图案化台面脊的自发形成及其在阶梯阵列演变中的作用

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Mesa structures fabricated on Si(111) surfaces have been found experimentally to develop step arrays with large spacing of the order of a micron or more after annealing at temperatures where sublimation becomes important. Ridges around the edges initially develop during annealing and form barriers to step motion before eventually breaking down. This produces an array of steps of the same sign with a few wide terraces. Computer simulations using one dimensional Burton, Cabrera and Frank (BCF) theory including attachment-detachment rates and step-step repulsion for this configuration show that the terraces evolve under different dynamics depending on the terrace widths. For large terrace widths, sublimation dominates the step dynamics and the Ehrlich-Schwoebel effect is negligible. Sinusoidal terrace width distributions result in this case. The experimentally measured step distribution has such a sinusoidal shape suggesting that the step dynamics is sublimation dominated on the mesas after ridge breakdown.
机译:在实验中发现在Si(111)表面上制造的台面结构可以在升华变得很重要的温度下退火后,开发出具有大间距微米或更多微米级间距的阶梯阵列。边缘周围的脊线最初在退火过程中形成,并在最终击穿之前形成步进运动的障碍。这会产生一系列带有相同符号的台阶,并带有几个宽阔的露台。使用此维的一维Burton,Cabrera和Frank(BCF)理论进行的计算机模拟(包括附着分离速率和阶跃排斥)表明,阶地根据阶地宽度在不同的动力学条件下演化。对于较大的梯田宽度,升华起主导作用,阶跃动力学则可忽略不计。在这种情况下会产生正弦梯形宽度分布。实验测量的阶跃分布具有正弦曲线形状,表明阶跃动力学在脊破裂后在台面上升华占优势。

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