Giant, magnet-free, and room-temperature Hall-like heat transfer

Author:

Xu Liujun12,Liu Jinrong3,Xu Guoqiang1,Huang Jiping3ORCID,Qiu Cheng-Wei1ORCID

Affiliation:

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

2. Graduate School of China Academy of Engineering Physics, Beijing 100193, China

3. Department of Physics, State Key Laboratory of Surface Physics, and Key Laboratory of Micro and Nano Photonic Structures Ministry of Education, Fudan University, Shanghai 200438, China

Abstract

Thermal chirality, generically referring to the handedness of heat flux, provides a significant possibility for modern heat control. It may be realized with the thermal Hall effect yet at the high cost of strong magnetic fields and extremely low temperatures. Here, we reveal magnet-free and room-temperature Hall-like heat transfer in an active thermal lattice composed of a stationary solid matrix and rotating solid particles. Rotation breaks the Onsager reciprocity relation and generates giant thermal chirality about two orders of magnitude larger than ever reported at the optimal rotation velocity. We further achieve anisotropic thermal chirality by breaking the rotation invariance of the active lattice, bringing effective thermal conductivity to a region unreachable by the thermal Hall effect. These results could enlighten topological and non-Hermitian heat transfer and efficient heat utilization in ways distinct from phonons.

Funder

Ministry of Education - Singapore

MOST | National Natural Science Foundation of China

Science and Technology Commission of Shanghai Municipality

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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