collaborators

9 papers

cond-mat.mtrl-sci2026

Giant-exchange-driven Vectorial Control of a Minimal Topological Magnet in Eu3In2As4

Haonan Chen, Xunkai Duan, Guangyi Wang +13

The interplay between magnetism and band topology provides a route to controlling quantum states of matter, yet its realization in materials is often constrained by weak exchange c…

cond-mat.mtrl-sci2026

Surface Functionalization Enables Two-Dimensional Altermagnetism and Giant Tunnel Magnetoresistance

Zhou Cui, Ziye Zhu, Bowen Hao +7

Two-dimensional (2D) altermagnets (AMs) are highly desirable for ultrafast, stray-field-free spintronics because they combine compensated magnetic order and momentum-dependent spin…

cond-mat.mtrl-sci2026

Altermagnetic Proximity Effect

Ziye Zhu, Richang Huang, Xianzhang Chen +5

Proximity effects not only complement the conventional methods of designing materials, but also enable realizing properties that are not present in any constituent region of the co…

cond-mat.mtrl-sci2026

Symmetry-Driven Unconventional Magnetoelectric Coupling in Perovskite Altermagnets: From Bulk to the Two-Dimensional Limit

Zhou Cui, Ziye Zhu, Xunkai Duan +4

The emergence of altermagnets establishes a new paradigm for multiferroics. Unlike conventional multiferroics relying on direct magnetoelectric coupling, multiferroic altermagnets…

cond-mat.mtrl-sci2025

Defect Engineering for Stabilizing Magnetic and Topological Properties in Mn(Bi1-xSbx)2Te4

Haonan Chen, Jiayu Wang, Huayao Li +18

MnBi2Te4 is a versatile platform for exploring diverse topological quantum states, yet its potential is hampered by intrinsic antisite defects. While Sb substitution has been emplo…

cond-mat.mtrl-sci2025

Altermagnetoelectric Spin Field Effect Transistor

Ziye Zhu, Xianzhang Chen, Xunkai Duan +4

Spin field-effect transistors (SFETs) are promising candidates for low-power spin-based electronics, yet existing realizations that rely on spin-orbit coupling are constrained by l…