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时空调制的非互易热材料。

Nonreciprocal Thermal Material by Spatiotemporal Modulation.

机构信息

Centre de Recherche Paul Pascal, UPR CNRS 8641, Université de Bordeaux, Pessac 33600, France.

GROC, UJI, Institut de Noves Tecnologies de la Imatge (INIT), Universitat Jaume I, 12080 Castelló, Spain.

出版信息

Phys Rev Lett. 2018 Mar 23;120(12):125501. doi: 10.1103/PhysRevLett.120.125501.

Abstract

The thermal properties of a material with a spatiotemporal modulation, in the form of a traveling wave, in both the thermal conductivity and the specific heat capacity are studied. It is found that these materials behave as materials with an internal convectionlike term that provides them with nonreciprocal properties, in the sense that the heat flux has different properties when it propagates in the same direction or in the opposite one to the modulation of the parameters. An effective medium description is presented which accurately describes the modulated material, and numerical simulations support this description and verify the nonreciprocal properties of the material. It is found that these materials are promising candidates for the design of thermal diodes and other advanced devices for the control of the heat flow at all scales.

摘要

研究了在热导率和比热容中具有时空调制形式的行波的材料的热特性。结果发现,这些材料表现为具有内部对流项的材料,从而赋予它们非互易性,即当热流在参数调制的相同或相反方向上传播时,具有不同的特性。提出了一种有效的介质描述,该描述准确地描述了调制材料,数值模拟支持该描述并验证了材料的非互易性。结果表明,这些材料是设计热二极管和其他用于控制各尺度热流的先进设备的有前途的候选材料。

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