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Emergence of Nodal-Knot Transitions by Disorder

Authors :
Gong, Ming
Zhao, Peng-Lu
Niu, Qian
Xie, X. C.
Publication Year :
2024

Abstract

Under certain symmetries, degenerate points in three-dimensional metals form one-dimensional nodal lines. These nodal lines sometimes feature knotted structures and have been studied across diverse backgrounds. As one of the most common physical perturbations, disorder effects often trigger novel quantum phase transitions. For nodal-knot phases, whether disorder can drive knot transitions remains an unclear and intriguing problem. Employing renormalization-group calculations, we demonstrate that nodal-knot transitions emerges in the presence of weak disorder. Specifically, both chemical-potential-type and magnetic-type disorders can induce knot transitions, resulting in the emergence of distinct knot topologies. The transition can be quantitatively reflected in the change of topological invariants such as the knot Wilson loop integrals. Our findings open up a new avenue for manipulating the topology of nodal-knot phases through disorder effects.<br />Comment: 7 pages, 4 figures (+ Supplementary Materials 14 pages, 6 figures)

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2409.01034
Document Type :
Working Paper