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Electromagnetic power absorption due to bumps and trenches on flat surfaces

机译:平坦表面上的凹凸会吸收电磁功率

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摘要

This paper presents a study of the absorption of electromagnetic power that results from the interaction of electromagnetic waves and cylindrical bumps or trenches on flat conducting surfaces. Configurations are characterized by means of adequately selected dimensionless variables and parameters so that applicability to mathematically equivalent (but physically diverse) systems can be achieved easily. Electromagnetic fields and absorption increments caused by such surface defects are evaluated by means of a high-order integral equation method which resolves fine details of the field near the surface, and which was validated by fully analytical approaches in a range of computationally challenging cases. The computational method is also applied to problems concerning bumps and trenches on imperfect conducting planes for which analytical solutions are not available. Typically, we find that absorption is enhanced by the presence of the defects considered, although, interestingly, absorption can also be significantly reduced in some cases—such as, e.g., in the case of a trench on a conducting plane where the incident electric field is perpendicular to the plane. Additionally, it is observed that, for some small-skin-depths large-wavelengths, the absorption increment is proportional to the increase in surface area. Significant physical insight is obtained on the heating that results from various types of electromagnetic incident fields.
机译:本文提出了对电磁功率吸收的研究,该吸收是由于电磁波与平面导电表面上的圆柱状凸点或沟槽的相互作用而产生的。通过适当选择的无量纲变量和参数来表征配置,以便可以轻松实现对数学上等效(但物理上不同)的系统的适用性。由此类表面缺陷引起的电磁场和吸收增量通过高阶积分方程方法进行评估,该方法可解析表面附近磁场的精细细节,并在一系列计算困难的情况下通过完全分析的方法进行了验证。该计算方法还适用于与不完善的导电平面上的凸块和沟槽有关的问题,而对于这些问题,尚无分析解决方案。通常,我们发现所考虑到的缺陷会增强吸收,尽管有趣的是,在某些情况下(例如,在导电平面上的沟槽中入射电场可能也会大大降低吸收)垂直于平面。另外,观察到,对于某些小皮肤深度的大波长,吸收增量与表面积的增加成比例。对于由各种类型的电磁入射场引起的加热,可以获得重要的物理见解。

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