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首页> 外文期刊>Physical review, E >Optimal detrended fluctuation analysis as a tool for the determination of the roughness exponent of the mounded surfaces
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Optimal detrended fluctuation analysis as a tool for the determination of the roughness exponent of the mounded surfaces

机译:优化的措施波动分析作为确定墩表面粗糙度指数的工具

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We present an optimal detrended fluctuation analysis (DFA) and apply it to evaluate the local roughness exponent in nonequilibrium surface growth models with mounded morphology. Our method consists in analyzing the height fluctuations computing the shortest distance of each point of the profile to a detrending curve that fits the surface within the investigated interval. We compare the optimal DFA (ODFA) with both the standard DFA and nondetrended analysis. We validate the ODFA method considering a one-dimensional model in the Kardar-Parisi-Zhang universality class starting from a mounded initial condition. We applied the methods to the Clarke-Vvedensky (CV) model in 2 + 1 dimensions with thermally activated surface diffusion and absence of step barriers. It is expected that this model belongs to the nonlinear molecular beam epitaxy (nMBE) universality class. However, an explicit observation of the roughness exponent in agreement with the nMBE class was still missing. The effective roughness exponent obtained with ODFA agrees with the value expected for the nMBE class, whereas using the other methods it does not agree. We also characterize the transient anomalous scaling of the CV model and obtained that the corresponding exponent is in agreement with the value reported for other nMBE models with weaker corrections to the scaling.
机译:我们提出了一种最佳的减重波动分析(DFA),并应用其以评估非挤压形态的非纤维表面生长模型中的局部粗糙度指数。我们的方法在于分析计算轮廓的每个点的最短距离的高度波动,以符合所研究的间隔内的表面的争制曲线。我们将最佳DFA(ODFA)与标准DFA和Nondetring分析进行比较。从Mounded初始条件开始,我们验证了考虑Kardar-Parisi-Zhang普遍性类的一维模型的ODFA方法。我们将方法应用于Clarke-Vvedensky(CV)模型,其中2 + 1尺寸与热活化的表面扩散和缺乏步屏障。预计该模型属于非线性分子束外延(NMBE)普遍性课程。然而,与NMBE类同意的粗糙度指数明确观察仍然缺失。通过ODFA获得的有效粗糙度指数同意NMBE类的价值,而使用其不同意的其他方法。我们还表征了CV模型的瞬态异常缩放,并获得了相应的指数与其他NMBE模型报告的值达成协议,对缩放较弱。

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