English

Charge-Density-Waves Tuned by Crystal Symmetry

Strongly Correlated Electrons 2023-06-29 v1 Materials Science

Abstract

The electronic orders appearing in condensed matter systems are originating from the precise arrangement of atoms constituting the crystal as well as their nature. This teneous relationship can lead to highly different phases in condensed matter, and drive electronic phase transitions. Here, we show that a very slight deformation of the crystal structure of TbTe3_3 can have a dramatic influence on the electronic order that is stabilized. In particular, we show that the Charge Density Wave (CDW) developping along the c\vec{c} axis in the pristine state, switches to an orientation along a\vec{a} when the naturally orthorhombic system is turned into a tetragonal system. This is achieved by performing true biaxial mechanical deformation of a TbTe3_3 sample from 250K to 375K, and by measuring both structural and electronic parameters with x-ray diffraction and transport measurements. We show that this switching transition is driven by the tetragonality parameter a/ca/c, and that the transition occurs for a=ca=c, with a coexistence region for 0.9985<a/c<1.0020.9985< a/c < 1.002. The CDW transition temperature TcT_c is found to have a linear dependence with a/ca/c, with no saturation in the deformed states investigated here, while the gap saturates out of the coexistence region. The linear dependence of TcT_c is accounted for within a tight-binding model. Our results question the relationship between the gap and TcT_c in RTe3_3 systems. More generally, our method of applying true biaxial deformation at cryogenic temperatures can be applied to many systems displaying electronic phase transitions, and opens a new route towards the study of coexisting or competing electronic orders in condensed matter.

Keywords

Cite

@article{arxiv.2306.15712,
  title  = {Charge-Density-Waves Tuned by Crystal Symmetry},
  author = {A. Gallo-Frantz and A. A. Sinchenko and D. Ghoneim and L. Ortega and P. Godard and P. -O. Renault and P. Grigoriev and A. Hadj-Azzem and P. Monceau and D. Thiaudière and E. Bellec and V. L. R. Jacques and D. Le Bolloc'h},
  journal= {arXiv preprint arXiv:2306.15712},
  year   = {2023}
}
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