Pressure-induced multiple phase transformations of the BaBi$_3$ superconductor
Li Xiang, Raquel A. Ribeiro, Udhara S. Kaluarachchi, Elena Gati, Manh, Cuong Nguyen, Cai-Zhuang Wang, Kai-Ming Ho, Sergey L. Bud'ko, and Paul C., Canfield

TL;DR
This study investigates pressure-induced phase transitions in BaBi$_3$, revealing three distinct superconducting phases linked to structural changes and suggesting a Lifshitz transition near 1.54 GPa, with implications for spin-orbit coupling effects.
Contribution
It provides the first detailed phase diagram of BaBi$_3$ under pressure, linking superconducting phases to structural transitions and electronic band changes.
Findings
Identification of three superconducting phases ${ m oldsymbol{ extalpha}}$, $eta$, and $oldsymbol{ extgamma}$ under pressure.
Observation of abrupt resistance change indicating phase transition at 0.27-0.33 GPa.
Evidence of a possible Lifshitz transition near 1.54 GPa in the $oldsymbol{ extgamma}$ phase.
Abstract
Measurements of temperature-dependent resistance and magnetization under hydrostatic pressures up to 2.13 GPa are reported for single-crystalline, superconducting BaBi. A temperature - pressure phase diagram is determined and the results suggest three different superconducting phases , , and in the studied pressure range. We further show that occurrence of the three superconducting phases is intuitively linked to phase transitions at higher temperature which are likely first order in nature. , which separates phase from and , is associated with an abrupt resistance change as pressure is increased from 0.27 GPa to 0.33 GPa. Above 0.33 GPa, an "S-shape" anomaly in the temperature-dependent resistance curve, , is observed and associated with the transition between the and phases. Further increasing of…
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