论文标题
非铁蛋白绝缘体中的四极杆拓扑扩散中的绝缘体
Quadrupole Topological Insulator in Non-Hermitian Thermal Diffusion
论文作者
论文摘要
量化的散装四极力矩已经公布了一个非平凡的边界状态,表现出较低的拓扑边缘状态,同时托管了零维的间隙内角模式。到目前为止,所有针对拓扑热材料的最先进的策略都未能观察到如此高阶的分层特征,因为与其光子对比不同,热扩散中缺乏量化的体积四极矩,从根本上讲,基本上可能会扩展带的扩展。在这里,我们报告了一种在扩散中创建量化的散装四极矩的配方,并观察到非富米热系统中的四极拓扑阶段。实验表明,与高阶状态相比,相对于高阶状态仅在经典波浪场中观察到的高阶状态形成鲜明对比的是,真实和虚构值的带显示了散装,间隙边缘和间隙角状态的层次结构标志。我们的发现为扩散操作开辟了独特的可能性,并为多极拓扑物理学建立了未开发的操场。
Quantized bulk quadrupole moment has unveiled a nontrivial boundary state, exhibiting lower-dimensional topological edge states and simultaneously hosting the in-gap corner modes of zero dimension. All state-of-the-art strategies for topological thermal metamaterials have so far failed to observe such higher-order hierarchical features, since the absence of quantized bulk quadrupole moments in thermal diffusion fundamentally forbids the possible expansions of band topology, unlike its photonic counterpart. Here, we report a recipe of creating quantized bulk quadrupole moments in diffusion, and observe the quadrupole topological phases in non-Hermitian thermal systems. The experiments demonstrate that both the real- and imaginary-valued bands showcase the hierarchical hallmarks of bulk, gapped edge, and in-gap corner states, in stark contrast to the higher-order states only observed on real-valued bands in classic wave fields. Our findings open up unique possibilities for diffusive manipulations and establish an unexplored playground for multipolar topological physics.