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Nanopore fabrication in amorphous Si: Viscous flow model and comparison to experiment

机译:非晶硅中纳米孔的制备:粘性流模型及与实验的比较

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摘要

Nanopores fabricated in free-standing amorphous silicon thin films were observed to close under 3 keV argon ion irradiation. The closing rate, measured in situ, exhibited a memory effect: at the same instantaneous radius, pores that started larger close more slowly. An ion-stimulated viscous flow model is developed and solved in both a simple analytical approximation for the small-deformation limit and in a finite element solution for large deformations. The finite-element solution exhibits surprising changes in cross-section morphology, which may be extremely valuable for single biomolecule detection, and are untested experimentally. The finite-element solution reproduces the shape of the measured nanopore radius versus fluence behavior and the sign and magnitude of the measured memory effect. We discuss aspects of the experimental data not reproduced by the model, and successes and failures of the competing adatom diffusion model.
机译:在3 keV氩离子辐照下,观察到在独立的非晶硅薄膜中制造的纳米孔关闭。原位测量的闭合速率表现出记忆效应:在相同的瞬时半径下,开始较大的孔闭合较慢。建立了一个离子激励粘性流模型,并以简单的解析近似(对于小变形极限)和有限元解决方案(对于大变形)求解。有限元解决方案的横截面形态发生了令人惊讶的变化,这对于单个生物分子的检测可能非常有价值,并且未经实验测试。有限元解决方案再现了所测量的纳米孔半径与注量行为的形状以及所测量的记忆效应的符号和大小。我们讨论了模型未复制的实验数据的各个方面,以及竞争性原子扩散模型的成功与失败。

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