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金的电阻纳米压痕:电接触电阻的实验与建模

Resistive-nanoindentation on gold: Experiments and modeling of the electrical contact resistance.

作者信息

Volpi Fabien, Rusinowicz Morgan, Comby-Dassonneville Solène, Parry Guillaume, Boujrouf Chaymaa, Braccini Muriel, Pellerin Didier, Verdier Marc

机构信息

University Grenoble Alpes, CNRS, Grenoble INP, SIMaP, 38000 Grenoble, France.

Scientec/CSInstruments, 91940 Les Ulis, France.

出版信息

Rev Sci Instrum. 2021 Mar 1;92(3):035102. doi: 10.1063/5.0032682.

Abstract

This paper reports the experimental, analytical, and numerical study of resistive-nanoindentation tests performed on gold samples (bulk and thin film). First, the relevant contributions to electrical contact resistance are discussed and analytically described. A brief comparison of tests performed on gold and on natively oxidized metals highlights the high reproducibility and the voltage-independence of experiments on gold (thanks to its oxide-free surface). Then, the evolution of contact resistance during nanoindentation is fully explained in terms of electronic transport regimes: starting from tunneling, electronic transport is then driven by ballistic conduction before ending with pure diffusive conduction. The corresponding analytical expressions, as well as their validity domains, are determined and compared with experimental data, showing excellent agreement. From there, focus is made on the diffusive regime. Resistive-nanoindentation outputs are fully described by analytical and finite-element modeling. The developed numerical framework allows a better understanding of the main parameters: it first assesses the technique capabilities (validity domains, sensitivity to tip defect, sensitivity to rheology, effect of an oxide layer, and so on), but it also validates the different assumptions made on current line distribution. Finally, it is shown that a simple calibration procedure allows a well-resolved monitoring of the contact area during resistive-nanoindentation performed on samples with complex rheologies (ductile thin film on an elastic substrate). Comparison to analytical and numerical approaches highlights the strength of resistive-nanoindentation for continuous area monitoring.

摘要

本文报道了对金样品(块状和薄膜)进行电阻纳米压痕测试的实验、分析和数值研究。首先,讨论并分析描述了对电接触电阻的相关贡献。对金和天然氧化金属进行的测试的简要比较突出了金实验的高再现性和电压独立性(由于其无氧化物表面)。然后,根据电子输运机制全面解释了纳米压痕过程中接触电阻的演变:从隧穿开始,电子输运随后由弹道传导驱动,最后以纯扩散传导结束。确定了相应的解析表达式及其有效域,并与实验数据进行了比较,显示出极好的一致性。从那里开始,重点放在扩散机制上。通过解析和有限元建模全面描述了电阻纳米压痕输出。所开发的数值框架有助于更好地理解主要参数:它首先评估了该技术的能力(有效域、对尖端缺陷的敏感性、对流变学的敏感性、氧化层的影响等),但它也验证了对电流线分布所做的不同假设。最后,结果表明,一个简单的校准程序允许在对具有复杂流变学的样品(弹性基底上的延性薄膜)进行电阻纳米压痕测试期间对接触面积进行良好解析的监测。与解析和数值方法的比较突出了电阻纳米压痕在连续面积监测方面的优势。

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