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Competing growth processes induced by next-nearest-neighbor interactions: Effects on meandering wavelength and stiffness

机译:由下一个最近邻相互作用引起的竞争增长过程:对蜿蜒波长和刚度的影响

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摘要

In this paper we explore the meandering instability of vicinal steps with a kinetic Monte Carlo simulations (kMC) model including the attractive next-nearest-neighbor (NNN) interactions. kMC simulations show that increase of the NNN interaction strength leads to considerable reduction of the meandering wavelength and to weaker dependence of the wavelength on the deposition rate F. The dependences of the meandering wavelength on the temperature and the deposition rate obtained with simulations are in good quantitative agreement with the experimental result on the meandering instability of Cu(0 2 24) [T. Maroutian et al., Phys. Rev. B 64, 165401 (2001)]. The effective step stiffness is found to depend not only on the strength of NNN interactions and the Ehrlich-Schwoebel barrier, but also on F. We argue that attractive NNN interactions intensify the incorporation of adatoms at step edges and enhance step roughening. Competition between NNN and nearest-neighbor interactions results in an alternative form of meandering instability which we call "roughening-limited" growth, rather than attachment-detachment-limited growth that governs the Bales-Zangwill instability. The computed effective wavelength and the effective stiffness behave as lambda(eff) similar to F-q and (beta) over tilde (eff) similar to F-p, respectively, with q approximate to p/2.
机译:在本文中,我们探讨了与包括具有吸引人的下一最近邻(NNN)相互作用的动力学蒙特卡罗模拟(KMC)互动的盲肠步骤的蜿蜒不稳定。 KMC模拟表明,NNN相互作用强度的增加导致曲折波长的显着降低,并且波长对沉积速度F的依赖性较弱。曲折波长对温度和用模拟获得的沉积速度的依赖性良好对实验结果的定量协议对Cu(0 2 24)的蜿蜒不稳定性(0 2 24)[ Maroutian等人。,phy。 Rev. B 64,165401(2001)]。发现有效的步骤刚度不仅取决于NNN相互作用和EHRLICH-SCHWOEBEL屏障的强度,还取决于F.我们认为有吸引力的NNN相互作用加剧了步骤边缘的掺入adatoms并增强步骤粗化。 NNN和最近邻相互作用之间的竞争导致替代形式的蜿蜒不稳定,我们称之为“粗略限制”的增长,而不是依附于拆卸的有限增长,管辖BALES-Zangiill不稳定。计算的有效波长和有效刚度的表现为类似于与F-P的TINDE(EFF)的λ(eff),其与F-P相似,Q近似为P / 2。

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