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Radiative heat transfer between metallic gratings using Fourier modal method with adaptive spatial resolution

机译:具有自适应空间分辨率的傅里叶模态方法在金属光栅之间的辐射热传递

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摘要

We calculate the radiative heat transfer between two identical metallic one-dimensional lamellar gratings. To this aim we present and exploit a modification to the widely used Fourier modal method, known as adaptive spatial resolution, based on a stretch of the coordinate associated with the pericxiicity of the grating. We first show that this technique dramatically improves the rate of convergence when calculating the heat flux, allowing us to explore smaller separations. We then present a study of heat flux as a function of the grating height, highlighting a remarkable amplification of the exchanged energy, ascribed to the appearance of spoof-plasmon modes, whose behavior is also spectrally investigated. Differently from previous works, our method allows us to explore a range of grating heights extending over several orders of magnitude. By comparing our results to recent studies we find a consistent quantitative disagreement with some previously obtained results going up to 50%. In some cases, this disagreement is explained in terms of an incorrect connection between the reflection operators of the two gratings.
机译:我们计算两个相同的金属一维层状光栅之间的辐射热传递。为此,我们基于与光栅的蠕变有关的坐标的拉伸,提出并利用了对广泛使用的傅里叶模态方法的一种改进,称为自适应空间分辨率。我们首先表明,该技术可显着提高计算热通量时的收敛速度,从而使我们能够探索更小的分离。然后,我们提出了对热通量与光栅高度的函数关系的研究,突出了交换能量的显着放大,这归因于欺骗-等离激元模态的出现,其行为也得到了光谱研究。与以前的工作不同,我们的方法使我们能够探索一系列延伸几个数量级的光栅高度。通过将我们的结果与最近的研究进行比较,我们发现一致的定量分歧,一些先前获得的结果高达50%。在某些情况下,根据两个光栅的反射算子之间的错误连接来解释这种分歧。

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  • 来源
    《Physical review》 |2017年第12期|125404.1-125404.9|共9页
  • 作者单位

    Laboratoire Charles Coulomb (L2C), UMR 5221 CNRS-Université de Montpellier, F-34095 Montpellier, France;

    Laboratoire Charles Coulomb (L2C), UMR 5221 CNRS-Université de Montpellier, F-34095 Montpellier, France;

    Laboratoire Charles Coulomb (L2C), UMR 5221 CNRS-Université de Montpellier, F-34095 Montpellier, France;

    Laboratoire Charles Coulomb (L2C), UMR 5221 CNRS-Université de Montpellier, F-34095 Montpellier, France ,Institut Universitaire de France, 1 rue Descartes, F-75231 Paris Cedex 05, France;

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