collaborators

6 papers

cond-mat.mtrl-sci2026

Symmetry-Driven Electrical Switching of Anisotropic Skyrmion Hall Effect in Altermagnets

Wenhui Du, Kaiying Dou, Ying Dai +3

Controlling the skyrmion Hall effect (SkHE) is pivotal for developing topological spintronics but typically relies on magnetic field reversal. Here, we demonstrate a general strate…

cond-mat.mtrl-sci2026

Moire Topological Magnetism Twist-Engineered from 2D Spin Spirals

Zhonglin He, Kaiying Dou, Wenhui Du +3

Topological magnetism, characterized by topologically protected spin textures, offers rich physics and transformative prospects for spintronics. However, its stabilization typicall…

cond-mat.mtrl-sci2026

Design of Skyrmion Bags with Tunable Topology in Symmetry-Broken 2D Lattices

Junhuang Yang, Kaiying Dou, Ying Dai +2

Magnetic skyrmion bags, as high-order topological swirling spin textures, offer rich fundamental physics and distinct advantages for spintronic applications; however, their realiza…

cond-mat.mtrl-sci2026

Altermagnetic Skyrmions in 2D Lattices Exhibiting Anisotropic Skyrmion Hall Effect

Kaiying Dou, Zhonglin He, Wenhui Du +3

Anisotropic skyrmion Hall effect (A-SkHE) in two-dimensional (2D) magnetic systems represents a captivating phenomenon in condensed-matter physics and materials science. While conv…

cond-mat.mtrl-sci2026

Ordering Mixed-Q Topological Magnetism into Lattice via Moire Engineering

Xiudong Wang, Zhonglin He, Kaiying Dou +3

Topological magnetic lattices offer a fertile ground for exploring fundamental physics and developing novel spintronic devices. However, current research is predominantly confined…

cond-mat.mes-hall2025

Light-Induced Spin Slanting in 2D Multiferroic Magnet

Jiangyu Zhao, Yangyang Feng, Kaiying Dou +4

Controlling spin orientation of two-dimensional (2D) materials has emerged as a frontier of condensed-matter physics, resulting in the discovery of various phases of matter. Howeve…