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Designing nonlinear thermal devices and metamaterials under the Fourier law: A route to nonlinear thermotics

机译:在傅立叶法下设计非线性热装置和超材料:非线性热电子的路线

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摘要

Nonlinear heat transfer can be exploited to reveal novel transport phenomena and thus enhance people's ability to manipulate heat flux at will. However, there has not been a mature discipline called nonlinear thermotics like its counterpart in optics or acoustics to make a systematic summary of relevant researches. In the current review, we focus on recent progress in an important part of nonlinear heat transfer, i.e., tailoring nonlinear thermal devices and metamaterials under the Fourier law, especially with temperature-dependent thermal conductivities. We will present the basic designing techniques including solving the equation directly and the transformation theory. Tuning nonlinearity coming from multi-physical effects, and how to calculate effective properties of nonlinear conductive composites using the effective medium theory are also included. Based on these theories, researchers have successfully designed various functional materials and devices such as the thermal diodes, thermal transistors, thermal memory elements, energy-free thermostats, and intelligent thermal materials, and some of them have also been realized in experiments. Further, these phenomenological works can provide a feasible route for the development of nonlinear thermotics.
机译:可以利用非线性传热来揭示新型运输现象,从而提高人们在旨在的方式操纵热通量的能力。然而,没有一种称为非线性热电子的成熟纪律,如光学或声学的对应物,以制定相关研究的系统摘要。在目前的审查中,我们专注于非线性传热,即根据傅立叶法定制非线性热器件和超材料的重要部分的最新进展,尤其是温度依赖性导热性。我们将介绍基本的设计技术,包括直接解决方程和转换理论。还包括调整来自多物理效果的非线性,以及如何使用有效介质理论计算非线性导电复合材料的有效特性。基于这些理论,研究人员已经成功设计了各种功能材料和设备,例如热二极管,热晶体管,热敏记忆元件,无能量恒温器和智能热材料,其中一些也在实验中实现了一些。此外,这些现象工程可以提供用于开发非线性热电子的可行途径。

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