collaborators

12 papers

cond-mat.supr-con2026

Pressure-induced Superconductivity in Thermoelectric Semiconductor Mg3Sb2

Cuiying Pei, Yasong Wu, Airan Li +14

The intrinsic electronic structures of narrow bandgap thermoelectric (TE) materials serve as a platform for the investigation of coupling effects of quasi-particles under high pres…

cond-mat.supr-con2026

Emergence of Double-Dome Superconductivity in the Pressurized Dirac Semimetal BaMg2Bi2

Qi Wang, Juefei Wu, Cuiying Pei +3

Dirac semimetal BaMg2Bi2 is reported to be a unique topological material that manifests surface superconductivity that coexistswith bulk band topology at ambient pressure. Here, we…

cond-mat.supr-con2026

On estimating superconducting shielding volume fraction from susceptibility in pressurized Ruddlesden-Popper nickelates: Response to arXiv:2602.19282

Yinghao Zhu, Di Peng, Enkang Zhang +10

In a recent preprint (arXiv:2602.19282) [1], the authors questioned the procedure we used to evaluate the demagnetization-corrected superconducting shielding volume fraction in pre…

cond-mat.supr-con2026

Pressure-tuned double-dome superconductivity in KZnBi with honeycomb lattice

Cuiying Pei, Hongjoo Ha, Sen Shao +8

Materials with honeycomb lattice structures exhibit unique electronic properties arising from their distinctive atomic arrangements. Their weakly coupled nature facilitates modulat…

cond-mat.str-el2026

Orbital-selective Mottness Driven by Geometric Frustration of Interorbital Hybridization in Pr4Ni3O10

Yidian Li, Mingxin Zhang, Xian Du +22

The interplay among orbital-selective Mott physics, Hund's coupling, tunable structural motifs, and Kondo-like scattering establishes a compelling paradigm for understanding and en…

cond-mat.supr-con2026

Spin-density-wave transition in monolayer-trilayer La3Ni2O7 single crystals

Mingxin Zhang, Jie Dou, Di Peng +17

The recent discovery of high-temperature superconductivity in pressurized Ruddlesden-Popper nickelates stimulated intense research into their correlated electron physics. Establish…