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Dynamics of desorption with lateral diffusion

机译:横向扩散解吸动力学

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The dynamics of desorption from a submonolayer of adsorbed atoms or ions are significantly influenced by the absence or presence of lateral diffusion of the adsorbed particles. When diffusion is present, the adsorbate configuration is simultaneously changed by two distinct processes, proceeding in parallel: adsorption/desorption, which changes the total adsorbate coverage, and lateral diffusion, which is coverage conserving. Inspired by experimental results, we here study the effects of these competing processes by kinetic Monte Carlo simulations of a simple lattice-gas model. In order to untangle the various effects, we perform large-scale simulations, in which we monitor coverage, correlation length, and cluster-size distributions, as well as the behavior of representative individual clusters, during desorption. For each initial adsorbate configuration, we perform multiple, independent simulations, without and with diffusion, respectively. We find that, compared to desorption without diffusion, the coverage-conserving diffusion process produces two competing effects: a retardation of the desorption rate, which is associated with a coarsening of the adsorbate configuration, and an acceleration due to desorption of monomers evaporated from the cluster perimeters. The balance between these two effects is governed by the structure of the adsorbate layer at the beginning of the desorption process. Deceleration and coarsening are predominant for configurations dominated by monomers and small clusters, while acceleration is predominant for configurations dominated by large clusters.
机译:从被吸附的原子或离子的亚单层解吸的动力学受到或不存在被吸附颗粒的横向扩散的显着影响。当存在扩散时,被吸附物的构型由两个不同的过程同时改变,这两个过程并行进行:吸附/解吸改变了被吸附物的总覆盖率,而侧向扩散则保持了覆盖率。受实验结果的启发,我们在这里通过简单的晶格气体模型的动力学蒙特卡洛模拟研究这些竞争过程的影响。为了解开各种影响,我们进行了大规模模拟,在解吸过程中,我们监视覆盖范围,相关长度和簇大小分布以及代表性单个簇的行为。对于每种初始吸附物构型,我们分别进行多次独立模拟,没有扩散,有扩散。我们发现,与不进行扩散的解吸相比,覆盖率保持扩散过程产生了两个竞争效应:解吸速率的延迟(与被吸附物构型的粗化有关)和由于从中蒸发的单体的解吸而引起的加速。集群周长。这两种作用之间的平衡由解吸过程开始时的吸附物层结构决定。对于以单体和小簇为主的构型,减速和粗化是主要的,而对于以大簇为主的构型,加速和粗化是主要的。

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