Survived <i>J</i><sub>eff</sub> = 3/2 state under pressure and its implication for unconventional superconductivity in GaTa<sub>4</sub>Se<sub>8</sub>: LDA+DMFT study
ORAL
Abstract
The lacunar spinel GaTa4Se8 is the first established example of Jeff = 3/2 Mott insulator. By applying pressure, it undergoes insulator-to-metal and superconducting transition. In order to understand the nature of this intriguing metallic phase and its possible relation to superconductivity, we performed the LDA+DMFT (local density approximation + dynamical mean-field theory) calculations as a function of pressure and with spin-orbit coupling taken into account. It is found that, even at high pressure corresponding to the metallic and superconducting phase, Jeff = 3/2 is well identified, indicating the novel nature of the superconductivity observed in this material. Possibilities of topological superconductivity and the spin-freezing superconductivity will be discussed.
*This work was supported by the National Research Foundation of Korea NRF-2018R1A2B2005204
–
Presenters
-
Min Yong Jeong
- Department of Physics, KAIST
- KAIST