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Electrically tunable near-field radiative heat transfer via ferroelectric materials

机译:通过铁电材料的电可调近场辐射传热

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摘要

We explore ways to actively control near-field radiative heat transfer between two surfaces that relies on electrical tuning of phonon modes of ferroelectric materials. Ferroelectrics are widely used for tunable electrical devices, such as capacitors and memory devices; however, their tunable properties have not yet been examined for heat transfer applications. We show via simulations that radiative heat transfer between two ferroelectric materials can be enhanced by over two orders of magnitude over the blackbody limit in the near field, and can be tuned as much as 16.5% by modulating the coupling between surface phonon polariton modes at the two surfaces via varying external electric fields. We then discuss how to maximize the modulation contrast for tunable thermal devices using the studied mechanism.
机译:我们探索了依靠铁电材料的声子模式的电调谐来主动控制两个表面之间的近场辐射热传递的方法。铁电体广泛用于可调谐电子设备,例如电容器和存储设备。但是,它们的可调特性尚未在传热应用中得到检验。我们通过仿真显示,两种铁电材料之间的辐射传热可以比近场黑体极限提高两个数量级,并且可以通过调制表面声子极化子模式之间的耦合来调节多达16.5%。两个表面通过变化的外部电场。然后,我们讨论如何使用所研究的机制来使可调热设备的调制对比度最大化。

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