activity
20242026
collaborators

11 papers

cond-mat.mtrl-sci2026

Coherent terahertz control of metastable magnetization in FePS3

Batyr Ilyas, Tianchuang Luo, Honglie Ning +7

The crystal lattice governs the emergent electronic, magnetic, and optical properties of quantum materials, making structural tuning through strain, pressure, or chemical substitut…

cond-mat.mtrl-sci2026

Coherent terahertz magnon-phonon three-wave mixing in a layered antiferromagnet

Liangyue Li, Na Wu, Zhengwang Lin +9

The coherent nonlinear dynamics between collective excitations, such as magnons and phonons, drive emergent phenomena in quantum materials, yet their direct observation remains a c…

cond-mat.mes-hall2026

Light-Matter-Coupling formalism for magnons: probing quantum geometry with light

Ying Shing Liu, Emil Viñas Boström, Michael A. Sentef +1

Nontrivial quantum geometry is a key feature of the wavefunctions of collective magnetic excitations in topological systems, but accessing it experimentally remains an open challen…

cond-mat.mes-hall2025

Anyonic Chern insulator in graphene induced by surface electromagnon vacuum fluctuations

Xinle Cheng, Emil Viñas Boström, Frank Y. Gao +3

Sub-wavelength cavities have emerged as a promising platform to realize strong light-matter coupling in condensed matter systems. Previous studies are limited to dielectric sub-wav…

cond-mat.str-el2025

Engineering 2D square lattice Hubbard models in 90 twisted Ge/SnX (X=S, Se) moiré supperlattices

Qiaoling Xu, Ammon Fischer, Nicolas Tancogne-Dejean +6

Due to the large-period superlattices emerging in moire two-dimensional (2D) materials, electronic states in such systems exhibit low energy flat bands that can be used to simulate…

cond-mat.supr-con2025

Cavity-altered superconductivity

Itai Keren, Tatiana A. Webb, Shuai Zhang +30

Is it feasible to alter the ground state properties of a material by engineering its electromagnetic environment? Inspired by theoretical predictions, experimental realizations of…