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cond-mat.mtrl-sci2026

Emergent d-wave altermagnetism in chlorine-adsorbed FeSe monolayer

Zi-Hao Ding, Ze-Feng Gao, Kai Liu +2

The paper proposes a chlorine‑adsorbed FeSe monolayer (Fe2Se2Cl) that hosts a robust altermagnetic ground state with a giant spin splitting of up to 620 meV, stabilized by gate‑tun…

cond-mat.mtrl-sci2026

Bridging Crystal Structure and Material Properties via Bond-Centric Descriptors

Jian-Feng Zhang, Ze-Feng Gao, Xiao-Qi Han +7

Although chemical bonding is the fundamental mechanistic bridge connecting atomic structure to macroscopic material properties, current data-driven materials science largely treats…

cond-mat.mtrl-sci2025

Ultrafast magnetic moment transfer and bandgap renormalization in monolayer FeCl

Yu-Hui Song, Huan-Cheng Yang, Kai Liu +1

The microscopic origin of laser-induced ultrafast demagnetization remains an open question, to which the non-thermal electronic distribution plays a vital role at the initial stage…

cond-mat.mtrl-sci2025

Anomalous charge density wave in altermagnetism

Zi-Hao Ding, Lei Wang, Zhen-Feng Ouyang +6

Exploring the intricate interplay between magnetism and charge density waves has long been a fundamental pursuit at the forefront of condensed matter research. In this letter, base…

cond-mat.mtrl-sci2025

Extremely strong spin-orbit coupling effect in light-element altermagnetic materials

Shuai Qu, Zhen-Feng Ouyang, Ze-Feng Gao +4

Spin-orbit coupling is a key to realize many novel physical effects in condensed matter physics. Altermagnetic materials possess the duality of real-space antiferromagnetism and re…

cond-mat.mtrl-sci2025

Crystal valley Hall effect

Chao-Yang Tan, Ze-Feng Gao, Huan-Cheng Yang +4

The time-reversal symmetry is thought to be a necessary condition for realizing valley Hall effect. If the time-reversal symmetry is broken, whether the valley Hall effect can be r…