论文标题
在手性晶体中可视化较高的拓扑
Visualizing higher-fold topology in chiral crystals
论文作者
论文摘要
物质的新拓扑阶段是发现非常规电磁现象的富有成果的平台。更高的拓扑是一个例子,其中低能描述超出了标准模型类似物。尽管进行了深入的实验研究,但最终的证据仍然难以捉摸,因为\ textit {高折手性费米子的多间隙拓扑性质}。在这封信中,我们利用微型化学工程和光发射光谱与光子能量的组合形成鲜明对比,以发现手性晶体的倍数。我们首次确定了较高的手性费米的所有散装分支,这对于允许我们探索多个带间间隙中独特的费米表面状态至关重要,这些阶层间隙表现出新兴的梯子结构。通过样品的设计器化学门控与我们的测量结合,我们发现了前所未有的多间隙体积边界对应关系。我们对多间隙电子拓扑结构的演示将推动对非常规拓扑响应的未来研究。
Novel topological phases of matter are fruitful platforms for the discovery of unconventional electromagnetic phenomena. Higher-fold topology is one example, where the low-energy description goes beyond Standard Model analogs. Despite intensive experimental studies, conclusive evidence remains elusive for the \textit{multi-gap topological nature of higher-fold chiral fermions}. In this Letter, we leverage a combination of fine-tuned chemical engineering and photoemission spectroscopy with photon energy contrast to discover the higher-fold topology of a chiral crystal. We identify all bulk branches of a higher-fold chiral fermion for the first time, critically important for allowing us to explore unique Fermi arc surface states in multiple inter-band gaps, which exhibit an emergent ladder structure. Through designer chemical gating of the samples in combination with our measurements, we uncover an unprecedented multi-gap bulk boundary correspondence. Our demonstration of multi-gap electronic topology will propel future research on unconventional topological responses.