Continuous crossover between insulating ferroelectrics and the polar metals: \textit{Ab initio} calculation of structural phase transitions of LiO ( = Ta, W, Re, Os)
arXiv:2404.00917
Abstract
Inspired by the recent discovery of a new polar metal LiReO by K. Murayama, \textit{et al}, we calculate the temperature()-dependent crystal structures of LiO3 with = Ta, W, Re, Os, using the self-consistent phonon (SCPH) theory. We have reproduced the experimentally observed polar-nonpolar structural phase transitions and the transition temperatures () of LiTaO, LiReO, and LiOsO. From the calculation, we predict that LiWO is a polar metal, which is yet to be tested experimentally. Upon doping electrons to the insulating LiTaO, the predicted is quickly suppressed and approaches those of the polar metals. Thus, there is a continuous crossover between ferroelectric insulators and polar metals if we dope electrons to the polar metals. Investigating the detailed material dependence of the interatomic force constants (IFCs), we explicitly show that the suppression of in polar metals can be ascribed to the screening of the long-range Li-O interaction, which is caused by the presence of the itinerant electrons.