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Frequency-Selective Near-Field Radiative Heat Transfer between Photonic Crystal Slabs: A Computational Approach for Arbitrary Geometries and Materials

机译:光子晶体板之间的频率选择性近场辐射传热:任意几何和材料的计算方法

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摘要

We demonstrate the possibility of achieving enhanced frequency-selective near-field radiative heat transfer between patterned (photonic-crystal) slabs at designable frequencies and separations, exploiting a general numerical approach for computing heat transfer in arbitrary geometries and materials based on the finite-difference time-domain method. Our simulations reveal a tradeoff between selectivity and near-field enhancement as the slab-slab separation decreases, with the patterned heat transfer eventually reducing to the unpatterned result multiplied by a fill factor (described by a standard proximity approximation). We also find that heat transfer can be further enhanced at selective frequencies when the slabs are brought into a glide-symmetric configuration, a consequence of the degeneracies associated with the nonsymmorphic symmetry group.
机译:我们证明了在可设计的频率和间距下,在图案化的(光子晶体)平板之间实现增强的频率选择性近场辐射热传递的可能性,并利用一种通用的数值方法来计算基于有限差分的任意几何形状和材料中的热传递时域方法。我们的仿真揭示了随着平板间距的减小,选择性和近场增强之间的权衡,图案化的热传递最终减少为未图案化的结果乘以填充因子(用标准接近度描述)。我们还发现,当将平板置于滑行对称构型时,由于与非对称对称群相关的简并性的结果,传热可以在选择的频率处进一步增强。

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