A study of electronic transport through a nanoscale air film

Ramonika Sengupta, Anand Anil, S. Talukder
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引用次数: 1

Abstract

This paper presents a simple model for predicting electrical conductivity of air with varying electrode separation and different moisture content present in air. Our system consists of a metallic thin film (Cu) coated sample and a needle tip in a box filled with air. A constant potential difference has been applied between the tip and the sample and electrical current is calculated for different air-gaps and for different humidity conditions using COMSOL Multiphysics software. The electric potential, electric field and current density in the region between the probe tip and sample have been presented. The numerical results showing the variation of terminal current as a function of gap separation and relative humidity are found to be analogous with theoretical prediction. This study will be useful for finding the optimal current in case of electric field induced scanning probe nanolithography techniques such as electrolithography [1].
纳米尺度空气薄膜中电子输运的研究
本文提出了一个简单的模型,用于预测不同电极间距和空气中不同水分含量的空气电导率。我们的系统由金属薄膜(Cu)涂层样品和针尖组成,针尖放在充满空气的盒子里。在尖端和样品之间施加恒定的电位差,并使用COMSOL Multiphysics软件计算不同气隙和不同湿度条件下的电流。给出了探针尖端与样品之间的电势、电场和电流密度。数值结果表明,终端电流随间隙间距和相对湿度的变化与理论预测相似。本研究将有助于在电光刻[1]等电诱导扫描探针纳米光刻技术中寻找最佳电流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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