Realization of Practical Eightfold Fermions and Fourfold van Hove Singularity in TaCo<sub>2</sub>Te<sub>2</sub>
ORAL
Abstract
Space groups describing the symmetry of lattice structure allow the emergence of fermionic quasiparticles with various degeneracy in the band structure. Theoretical efforts have predicted many materials hosting fermions with the highest degeneracy, i.e., eightfold fermions, yet lacking experimental realization. Here, we explore the band degeneracies in TaCo2Te2 crystals. Through systematic experimental and theoretical analyses, we establish TaCo2Te2 as a nonsymmorphic crystal with negligible spin-orbit coupling (SOC) and long range magnetic order. These critical properties guarantee the first realization of practical eightfold fermions and fourfold van Hove singularity, as directly observed by photoemission spectroscopy. TaCo2Te2 serves as a topological quantum critical platform, which can be tuned into various magnetic, topologically trivial and nontrivial phases by adding strain, magnetic field or SOC. The latter is demonstrated by our first principle calculation, which shows that enhancing SOC in TaCo2Te2 will promote the experimental observation of bulk hourglass fermions. Our results establish TaCo2Te2 as a unique platform to explore states of matter intertwining magnetism, correlation, symmetry, and band topology.
*the National Natural Science Foundation of China (NSFC) (Grants No. 12074163)Guangdong Basic and Applied Basic Research Foundation (Grants No. 2022B1515020046 and No. 2021B1515130007)the Guangdong Innovative and Entrepreneurial Research Team Program (Grants No. 2019ZT08C044)Shenzhen Science and Technology Program (Grant No. KQTD20190929173815000 and No. RCYX20200714114523069)
–
Publication: H.T.Rong et al., arXiv:2208.02967
Presenters
-
Hongtao Rong
- Southern University of Science and Technology