collaborators

6 papers

cond-mat.mtrl-sci2026

Light-Driven Ferroic Switching Enables Reversible Control of Hydrogen Adsorption Thermodynamics

Xueqing Wan, Zhenlong Zhang, Charles Paillard +5

Reversible ultrafast switching of surface thermodynamics is highly desirable for hydrogen storage and catalysis yet remains elusive at the nanoscale. Here we demonstrate that photo…

cond-mat.mtrl-sci2025

Ferroelectric Switchable Topological Magnon Hall Effect in Type-I Multiferroics

Quanchao Du, Jinlian Lu, Xueqing Wan +2

Electric control of magnetism at room temperature is crucial for developing next-generation, low-power spintronic devices. However, the intrinsic incompatibility between ferroelect…

cond-mat.mtrl-sci2025

Electro-optic effects in some sliding ferroelectrics

Xueqing Wan, Zhenlong Zhang, Charles Paillard +4

Sliding ferroelectrics, which exhibit out-of-plane polarization arising from specific stacking rather than conventional ionic displacements, are new types of ferroelectrics whose u…

cond-mat.mtrl-sci2025

Nonreciprocal magnons in layered antiferromagnets VPX3(X =S,Se,Te)

Quanchao Du, Zhenlong Zhang, Jinyang Ni +2

Nonreciprocal magnons, characterized by propagation with differing energies along the k and -k directions, are crucial for modern spintronics applications. However, their realizati…

cond-mat.mes-hall2025

Topological switching in bilayer magnons via electrical control

Xueqing Wan, Quanchao Du, Jinlian Lu +5

Topological magnons, quantized spin waves featuring nontrivial boundary modes, present a promising route toward lossless information processing. Realizing practical devices typical…

cond-mat.mtrl-sci2025

Nonvolatile Magnonics in Bilayer Magnetic Insulators

Jinyang Ni, Zhenlong Zhang, Jinlian Lu +3

Nonvolatile control of spin order or spin excitations offers a promising avenue for advancing spintronics; however, practical implementation remains challenging. In this letter, we…