English

Optical conductivity in multiferroic GaV$_4$S$_8$ and GeV$_4$S$_8$: Phonons and electronic transitions

Strongly Correlated Electrons 2017-10-06 v3

Abstract

We report on optical spectroscopy on the lacunar spinels GaV4_4S8_8 and GeV4_4S8_8 in the spectral range from 100 to 23000 cm1^{-1} and for temperatures from 5 to 300 K. These multiferroic spinel systems reveal Jahn-Teller driven ferroelectricity and complex magnetic order at low temperatures. We study the infrared-active phonon modes and the low-lying electronic excitations in the cubic high-temperature phase, as well as in the orbitally and in the magnetically ordered low-temperature phases. We compare the phonon modes in these two compounds, which undergo different symmetry-lowering Jahn-Teller transitions into ferroelectric and orbitally ordered phases, and exhibit different magnetic ground states. We follow the splitting of the phonon modes at the structural phase transition and detect additional splittings at the onset of antiferromagnetic order in GeV4_4S8_8. We observe electronic transitions within the dd-derived bands of the V4_4 clusters and document a significant influence of the structural and magnetic phase transitions on the narrow electronic band gaps.

Keywords

Cite

@article{arxiv.1704.08602,
  title  = {Optical conductivity in multiferroic GaV$_4$S$_8$ and GeV$_4$S$_8$: Phonons and electronic transitions},
  author = {S. Reschke and F. Mayr and Zhe Wang and P. Lunkenheimer and W. Li and D. Szaller and S. Bordács and I. Kézsmárki and V. Tsurkan and A. Loidl},
  journal= {arXiv preprint arXiv:1704.08602},
  year   = {2017}
}

Comments

12 pages, 10 figures