Author:
Yu Zhenhai,Wu Wei,Hu Qingyang,Zhao Jinggeng,Li Chunyu,Yang Ke,Cheng Jinguang,Luo Jianlin,Wang Lin,Mao Ho-kwang
Abstract
CrAs was observed to possess the bulk superconductivity under high-pressure conditions. To understand the superconducting mechanism and explore the correlation between the structure and superconductivity, the high-pressure structural evolution of CrAs was investigated using the angle-dispersive X-ray diffraction (XRD) method. The structure of CrAs remains stable up to 1.8 GPa, whereas the lattice parameters exhibit anomalous compression behaviors. With increasing pressure, the lattice parameters a and c both demonstrate a nonmonotonic change, and the lattice parameter b undergoes a rapid contraction at ∼0.18−0.35 GPa, which suggests that a pressure-induced isostructural phase transition occurs in CrAs. Above the phase transition pressure, the axial compressibilities of CrAs present remarkable anisotropy. A schematic band model was used to address the anomalous compression behavior of CrAs. The present results shed light on the structural and related electronic responses to high pressure, which play a key role toward understanding the superconductivity of CrAs.
Funder
NSAF
National Natural Science Foundation of China
Program for New Century Excellent Talents in University
Publisher
Proceedings of the National Academy of Sciences
Cited by
16 articles.
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