English

Electronic band structure in pristine and Sulfur-doped Ta$_2$NiSe$_5$

Materials Science 2022-09-14 v1

Abstract

We present an angle-resolved photoemission study of the electronic band structure of the excitonic insulator Ta2_2NiSe5_5, as well as its evolution upon Sulfur doping. Our experimental data show that while the excitonic insulating phase is still preserved at a Sulfur-doping level of 25%\%, such phase is heavily suppressed when there is a substantial amount, \sim 50%\%, of S-doping at liquid nitrogen temperatures. Moreover, our photon energy-dependent measurements reveal a clear three dimensionality of the electronic structure, both in Ta2_2NiSe5_5 and Ta2_2Ni(Se1x_{1-x}Sx_x)5_5 (x=0.25,0.50x=0.25, 0.50) compounds. This suggests a reduction of electrical and thermal conductivities, which might make these compounds less suitable for electronic transport applications.

Keywords

Cite

@article{arxiv.2205.15883,
  title  = {Electronic band structure in pristine and Sulfur-doped Ta$_2$NiSe$_5$},
  author = {Tanusree Saha and Luca Petaccia and Barbara Ressel and Primož Rebernik Ribič and Giovanni Di Santo and Wenjuan Zhao and Giovanni De Ninno},
  journal= {arXiv preprint arXiv:2205.15883},
  year   = {2022}
}