Chemical pressure effect on the optical conductivity of the nodal-line semimetals ZrSiY (Y= S,Se,Te) and ZrGeY (Y= S,Te)

31Citations
Citations of this article
15Readers
Mendeley users who have this article in their library.

Abstract

ZrSiS is a nodal-line semimetal, whose electronic band structure contains a diamond-shaped line of Dirac nodes. We carried out a comparative study on the optical conductivity of ZrSiS and the related compounds ZrSiSe, ZrSiTe, ZrGeS, and ZrGeTe by reflectivity measurements over a broad frequency range combined with density functional theory calculations. The optical conductivity exhibits a distinct U shape, ending at a sharp peak at around 10000cm-1 for all studied compounds except for ZrSiTe. The U shape of the optical conductivity is due to transitions between the linearly dispersing bands crossing each other along the nodal line. The sharp high-energy peak is related to transitions between almost parallel bands, and its energy position depends on the interlayer bonding correlated with the c/a ratio, which can be tuned by either chemical or external pressure. For ZrSiTe, another pair of crossing bands appears in the vicinity of the Fermi level, corrugating the nodal-line electronic structure and leading to the observed difference in optical conductivity. The findings suggest that the Dirac physics in ZrXY compounds with X=Si,Ge and Y=S,Se,Te is closely connected to the interlayer bonding.

Cite

CITATION STYLE

APA

Ebad-Allah, J., Afonso, J. F., Krottenmüller, M., Hu, J., Zhu, Y. L., Mao, Z. Q., … Kuntscher, C. A. (2019). Chemical pressure effect on the optical conductivity of the nodal-line semimetals ZrSiY (Y= S,Se,Te) and ZrGeY (Y= S,Te). Physical Review B, 99(12). https://doi.org/10.1103/PhysRevB.99.125154

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free