首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Solution of near-field thermal radiation in one-dimensional layered media using dyadic Green's functions and the scattering matrix method
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Solution of near-field thermal radiation in one-dimensional layered media using dyadic Green's functions and the scattering matrix method

机译:利用二进格林函数和散射矩阵法求解一维分层介质中的近场热辐射

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摘要

A general algorithm is introduced for the analysis of near-field radiative heat transfer in one-dimensional multi-layered structures. The method is based on the solution of dyadic Green's functions, where the amplitude of the fields in each layer is calculated via a scattering matrix approach. Several tests are presented where cubic boron nitride is used in the simulations. It is shown that a film emitter thicker than I urn provides the same spectral distribution of near-field radiative flux as obtained from a bulk emitter. Further simulations have pointed out that the presence of a body in close proximity to an emitter can alter the near-field spectrum emitted. This algorithm can be employed to study thermal one-dimensional layered media and photonic crystals in the near-field in order to design radiators optimizing the performances of nanoscale-gap thermophotovoltaic power generators.
机译:介绍了一种用于一维多层结构中近场辐射热传递分析的通用算法。该方法基于二进格林函数的解,其中通过散射矩阵方法计算每层中场的振幅。在模拟中使用立方氮化硼的地方进行了一些测试。结果表明,比I urn厚的薄膜发射器提供的近场辐射通量的光谱分布与从体发射器获得的光谱分布相同。进一步的模拟已经指出,靠近发射器的物体的存在会改变发射的近场光谱。该算法可用于研究近场热一维层状介质和光子晶体,以设计优化纳米级间隙热光电发电机性能的散热器。

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