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Thermal discrete dipole approximation for the description of thermal emission and radiative heat transfer of magneto-optical systems

机译:热离散偶极近似用于描述磁光系统的热发射和辐射传热的描述

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We present here a generalization of the thermal discrete dipole approximation (TDDA) that allows us to describe the near-field radiative heat transfer between finite objects of arbitrary shape that exhibit magneto-optical (MO) activity. We also extend the TDDA approach to describe the thermal emission of a finite object with and without MO activity. Our method is also valid for optically anisotropic materials described by an arbitrary permittivity tensor and we provide simple closed formulas for the basic thermal quantities that considerably simplify the implementation of the TDDA method. Moreover, we show that by employing our TDDA approach one can rigorously demonstrate Kirchhoff's radiation law relating the emissivity and absorptivity of an arbitrary MO object. Our work paves the way for the theoretical study of the active control of emission and radiative heat transfer between MO systems of arbitrary size and shape.
机译:我们在这里展示了热离散偶极近似(TDDA)的概括,其允许我们描述具有磁光学(MO)活性的任意形状的有限对象之间的近场辐射热传递。 我们还扩展了TDDA方法来描述具有和没有Mo活动的有限对象的热排放。 我们的方法对于由任意介电常数张量描述的光学各向异性材料也有效,并且我们为基本热量提供了简单的封闭式公式,其显着简化了TDDA方法的实现。 此外,我们表明,通过采用我们的TDDA方法,可以严格展示Kirchhoff的辐射律,与任意Mo对象的发射率和吸收率相关。 我们的工作为主动控制发射和辐射传热的理论研究铺平了任意尺寸和形状。

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