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Hidden topological number of quadratic Dirac fermions in β-PbO2
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Hidden topological number of quadratic Dirac fermions in β-PbO2

C.-S. Kuo, A. Huang, C.-H. Chen 和 H.-T. Jeng
Materials Today Advances, 卷.30
2026
Web of Science ID: WOS:001768938700001

摘要

DFT Dirac PbO2 Topological matter Fermions Spin orbit coupling Topology Density-functional-theory Dirac Dirac fermions Elementary particle physics Nodal line Research fields Topological matter Topological number Topological phase β-PbO Density functional theory
Gapless topological phase, including Weyl, Dirac, and nodal line semimetals, has become an attractive research field in recent years. Some of them have been studied in elementary particle physics, while nodal line and quadratic Dirac semimetals are beyond. Among the latter category, nodal line semimetals have been well studied in the past decade, however, the quadratic Dirac semimetals are less discovered by experiments or first-principles calculations, and how to analyze the topological properties of a Dirac node itself remains elusive while highly desirable. In this work, we developed a new method to unravel a hidden topological invariance of quadratic Dirac fermion of β-PbO2. Through density functional theory (DFT) and k⋅p model in this new approach, we predict that β-PbO2 hosts the quadratic Dirac node (QDN) with mirror Chern number 2 when spin–orbit coupling is included, surpassing previous studies of topological semimetals. Our work paves the route toward a new class of topological matter. © 2026 The Authors

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https://www.scopus.com/inward/record.uri?eid=2-s2.0-105038308619&doi=10.1016%2fj.mtadv.2026.100805&partnerID=40&md5=34e2a9ab725663adb39a50ff375271a0檢視
url
https://doi.org/10.1016/j.mtadv.2026.100805檢視
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引用書目主題
5 Physics
5.30 Superconductor Science
5.30.755 Topological Superconductivity
Web Of Science研究領域
Materials Science, Multidisciplinary
ESI研究領域
Materials Science

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