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Emissvity of metallic microcontoured surfaces

机译:金属微轮廓表面的发射率

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In this paper, we study the diffraction of electromagnetic radiation by a periodic micro-rough surface separating vacuum from a metal with a finite conductivity. We submit the integral method to the surface impedance boundary condition. Thus the numerical implementation is greatly reduced. We compare the numerical emissivities obtained by this approach to those we have calculated through the rigorous multilayer modal method. This enables us to show that the mentioned approximate method has two regions of validity: one corresponding to fairly flat surfaces and the other to very deep surfaces. It is well known that both the Kirchhoff approximation and the constant flat boundary impedance approximation are also valid for fairly flat surfaces. Our investigation aims also to establish whether these two approximate methods lead to the same results, and whether the integral method submitted to the surface impedance condition has a larger domain of validity. Concerning deep surfaces with a period smaller than the wavelength, we introduce the homogenization process in order to study its accuracy. Finally, this work permitted to identify three different regimes depending on the surface slopes: the simple scattering regime, the homogenization regime and the intermediate regime. For the latter, if the period is in the order of the wavelength, then we will show that the emissivity can be exalted. (c) 2005 Elsevier Ltd. All rights reserved.
机译:在本文中,我们研究了将真空与具有有限电导率的金属分离的周期性微粗糙表面对电磁辐射的衍射.我们将积分方法提交到表面阻抗边界条件。因此,数值实现大大减少。我们将通过这种方法获得的数值发射率与我们通过严格的多层模态方法计算的数值发射率进行了比较。这使我们能够证明上述近似方法具有两个有效区域:一个对应于相当平坦的表面,另一个对应于非常深的表面。众所周知,基尔霍夫近似和恒定平坦边界阻抗近似也适用于相当平坦的表面。我们的研究还旨在确定这两种近似方法是否导致相同的结果,以及提交到表面阻抗条件的积分方法是否具有更大的有效性域。对于周期小于波长的深表面,我们引入了均质化过程,以研究其准确性。最后,这项工作允许根据地表坡度确定三种不同的状态:简单散射状态、均质状态和中间状态。对于后者,如果周期按波长的顺序排列,那么我们将证明发射率可以提升。(c) 2005 爱思唯尔有限公司保留所有权利。

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