Here we report the discovery of pressure-induced superconductivity in quasi-one-dimensional Ta2PdSe6, through a combination of electrical transport, synchrotron x-ray diffraction, and theoretical calculations. Our transport measurements show that the superconductivity appears at a critical pressure Pc∼18.3 GPa and is robust upon further compression up to 62.6 GPa. The estimated upper critical field μ0Hc2(0) in the pressurized Ta2PdSe6 is much lower than the Pauli limiting field, in contrast to the case in its isostructural analogs M2PdxX5(M=Nb, Ta; X=S,Se). Concomitant with the occurrence of superconductivity, anomalies in pressuredependent transport properties are observed, including sign reversal of Hall coefficient, abnormally enhanced resistance, and dramatically suppressed magnetoresistance. Meanwhile, room-temperature synchrotron x-ray diffraction experiments reveal the stability of the pristine monoclinic structure (space group C2/m ) upon compression. Combined with the density functional theory calculations, we argue that a pressure-induced Lifshitz transition could be the electronic origin of the emergent superconductivity in Ta2PdSe6.
@article{arxiv.2301.09050,
title = {Pressure-induced superconductivity in quasi-one-dimensional semimetal $\mathrm{Ta}_2 \mathrm{PdSe}_6$},
author = {Haiyang Yang and Yonghui Zhou and Liangyu Li and Zheng Chen and Zhuyi Zhang and Shuyang Wang and Jing Wang and Xuliang Chen and Chao An and Ying Zhou and Min Zhang and Ranran Zhang and Xiangde Zhu and Lili Zhang and Xiaoping Yang and Zhaorong Yang},
journal= {arXiv preprint arXiv:2301.09050},
year = {2023}
}