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Pressure-Induced Superconducting-like Transition in the $\it d$-wave Altermagnet Candidate CsV$_2$Se$_2$O

Superconductivity 2026-04-13 v1 Materials Science Strongly Correlated Electrons

Abstract

Altermagnetism generates exchange-type spin splitting without net magnetization and, in its d\it d-wave form, resembles the angular symmetry of unconventional d\it d-wave superconductivity. Whether this correspondence bears directly on superconducting instabilities in real correlated materials remains open. Here we study the quasi-two-dimensional vanadium oxychalcogenide CsV2_2Se2_2O (CVSO), a square-net d\it d-wave altermagnet candidate, through combined experimental and theoretical investigation of its lattice structure, electronic structure and transport properties. At ambient pressure, CVSO is a weakly insulating parent state with a density-wave-like anomaly near 100 K, and its bulk properties are most consistent with a G-type compensated antiferromagnetic background. Under compression, the density-wave-like feature is suppressed, the magnetoresistance evolves from predominantly negative to positive, and a superconducting-like resistive downturn emerges below about 3 K. This low-temperature anomaly is reproducible across samples and pressure media, and is suppressed by magnetic field. Room-temperature X-ray diffraction reveals no symmetry lowering, whereas does show a pronounced compressibility anomaly over the same pressure range. CVSO thus reveals a pressure-tuned phase diagram in which a reconstructed weakly insulating parent state gives way to strange-metal-like transport and superconducting-like behavior, echoing broader phenomenology associated with unconventional superconductors, including cuprates and nickelates.

Keywords

Cite

@article{arxiv.2604.09457,
  title  = {Pressure-Induced Superconducting-like Transition in the $\it d$-wave Altermagnet Candidate CsV$_2$Se$_2$O},
  author = {Yuanzhe Li and Yilin Han and Liu Yang and Wanli He and Pengda Ye and Wencheng Huang and Jiabin Qiao and Yuemei Li and Xiaodong Sun and Tingli He and Jiayi Han and Yuxiang Chen and Ruifeng Tian and Hao Sun and Yuwei Liu and Feng Wu and Baoshan Song and Zhengtai Liu and Mao Ye and Yaobo Huang and Kenichi Ozawa and Ji Dai and Massimo Tallarida and Shengtao Cui and Jie Chen and Meiling Jin and Wayne Zheng and Chaoyu Chen and Zhiwei Wang and Zhi-Ming Yu and Xiang Li and Yugui Yao},
  journal= {arXiv preprint arXiv:2604.09457},
  year   = {2026}
}