arXiv · 1801.05719
$\beta$-CuI: a Dirac semimetal without surface Fermi arcs
Abstract
Anomalous surface states with Fermi arcs are commonly considered to be a fingerprint of Dirac semimetals (DSMs). In contrast to Weyl semimetals, however, Fermi arcs of DSMs are not topologically protected. Using first-principles calculations, we predict that $\beta$-CuI is a peculiar DSM whose surface states form closed Fermi pockets instead of Fermi arcs. In such a fermiological Dirac semimetal, the deformation mechanism from Fermi arcs to Fermi pockets stems from a large cubic term preserving all crystal symmetries, and the small energy difference between the surface and bulk Dirac points. The cubic term in $\beta$-CuI, usually negligible in prototypical DSMs, becomes relevant because of the particular crystal structure. As such, we establish a concrete material example manifesting the lack of topological protection for surface Fermi arcs in DSMs
Explore related subjects
Keep this discovery
Congcong Le, Xianxin Wu, Shengshan Qin, Yinxiang Li, Ronny Thomale, Fuchun Zhang, Jiangping Hu. 2018-01-17. $\beta$-CuI: a Dirac semimetal without surface Fermi arcs. https://doi.org/10.1073/pnas.1803599115
Cite the original work for its findings. Save a collection to share your selection of sources.