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时空热超材料中的扩散菲佐拖曳

Diffusive Fizeau Drag in Spatiotemporal Thermal Metamaterials.

作者信息

Xu Liujun, Xu Guoqiang, Huang Jiping, Qiu Cheng-Wei

机构信息

Department of Electrical and Computer Engineering, National University of Singapore, Singapore 117583, Singapore.

Department of Physics, State Key Laboratory of Surface Physics, and Key Laboratory of Micro and Nano Photonic Structures (MOE), Fudan University, Shanghai 200438, China.

出版信息

Phys Rev Lett. 2022 Apr 8;128(14):145901. doi: 10.1103/PhysRevLett.128.145901.

Abstract

Fizeau drag means that the speed of light can be regulated by the flow of water, owing to the momentum interaction between photons and moving media. However, the dragging of heat is intrinsically elusive, due to the absence of momentum in thermal diffusion. Here, we design a spatiotemporal thermal metamaterial based on heat transfer in porous media to demonstrate the diffusive analog to Fizeau drag. The space-related inhomogeneity and time-related advection enable the diffusive Fizeau drag effect. Thanks to the spatiotemporal coupling, different propagating speeds of temperature fields can be observed in two opposite directions, thus facilitating nonreciprocal thermal profiles. The phenomenon of diffusive Fizeau drag stands robustly even when the direction of advection is perpendicular to the propagation of temperature fields. These results could pave an unexpected way toward realizing the nonreciprocal and directional transport of mass and energy.

摘要

斐索曳引意味着由于光子与运动介质之间的动量相互作用,光的速度可以由水流来调节。然而,由于热扩散中不存在动量,热的曳引本质上难以捉摸。在此,我们基于多孔介质中的热传递设计了一种时空热超材料,以证明与斐索曳引类似的扩散现象。与空间相关的不均匀性和与时间相关的平流导致了扩散斐索曳引效应。由于时空耦合,可以在两个相反方向观察到温度场的不同传播速度,从而产生非互易热分布。即使平流方向垂直于温度场的传播方向,扩散斐索曳引现象依然十分明显。这些结果可能为实现质量和能量的非互易定向传输开辟一条意想不到的途径。

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