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Higher‐Order Topological States in Thermal Diffusion

Hao Wu, Hao Hu, Xixi Wang, Zhixia Xu, Baile Zhang, Qi Jie Wang, Yuanjin Zheng, Jingjing Zhang, Tie Jun Cui, Yu Luo

2023Advanced Materials40 citationsDOIOpen Access PDF

Abstract

Unlike conventional topological materials that carry topological states at their boundaries, higher-order topological materials are able to support topological states at boundaries of boundaries, such as corners and hinges. While band topology has been recently extended into thermal diffusion for thermal metamaterials, its realization is limited to a 1D thermal lattice, lacking access to the higher-order topology. In this work, the experimental realization is reported of a higher-order thermal topological insulator in a generalized 2D diffusion lattice. The topological corner states for thermal diffusion are observed in the bandgap of diffusion rate of the bulk, as a consequence of the anti-Hermitian nature of the diffusion Hamiltonian. The topological protection of these thermal corner states is demonstrated with the stability of their diffusion profile in the presence of amorphous deformation. This work constitutes the first realization of higher-order topology in purely diffusive systems and opens the door for future thermal management with topological protection beyond 1D geometries.

Topics & Concepts

Topology (electrical circuits)Materials scienceLattice (music)Topological insulatorThermalPhysicsCondensed matter physicsMathematicsThermodynamicsAcousticsCombinatoricsTopological Materials and PhenomenaQuantum Mechanics and Non-Hermitian PhysicsMetamaterials and Metasurfaces Applications
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