9 papers
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…
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…
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…
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…
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…
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…