Light-Induced Renormalization of the Dirac Quasiparticles in the Nodal-Line Semimetal ZrSiSe.

Details

Serval ID
serval:BIB_513B1175AE01
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Light-Induced Renormalization of the Dirac Quasiparticles in the Nodal-Line Semimetal ZrSiSe.
Journal
Physical review letters
Author(s)
Gatti G., Crepaldi A., Puppin M., Tancogne-Dejean N., Xian L., De Giovannini U., Roth S., Polishchuk S., Bugnon P., Magrez A., Berger H., Frassetto F., Poletto L., Moreschini L., Moser S., Bostwick A., Rotenberg E., Rubio A., Chergui M., Grioni M.
ISSN
1079-7114 (Electronic)
ISSN-L
0031-9007
Publication state
Published
Issued date
14/08/2020
Peer-reviewed
Oui
Volume
125
Number
7
Pages
076401
Language
english
Notes
Publication types: Journal Article
Publication Status: ppublish
Abstract
In nodal-line semimetals, linearly dispersing states form Dirac loops in the reciprocal space with a high degree of electron-hole symmetry and a reduced density of states near the Fermi level. The result is reduced electronic screening and enhanced correlations between Dirac quasiparticles. Here we investigate the electronic structure of ZrSiSe, by combining time- and angle-resolved photoelectron spectroscopy with ab initio density functional theory (DFT) complemented by an extended Hubbard model (DFT+U+V) and by time-dependent DFT+U+V. We show that electronic correlations are reduced on an ultrashort timescale by optical excitation of high-energy electrons-hole pairs, which transiently screen the Coulomb interaction. Our findings demonstrate an all-optical method for engineering the band structure of a quantum material.
Pubmed
Web of science
Create date
09/09/2020 11:30
Last modification date
17/02/2021 7:27
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