7 citations · 7 across the 3 of their papers we have counts for
6 papers
Anomalous Hall Conductivity as an Effective Means of Tracking the Floquet Weyl Nodes in Quasi-One-Dimensional -BiI
Qingfeng Huang, Shengpu Huang, Tingyan Chen +5
While Floquet engineering offers a powerful paradigm for manipulating topological phases, particularly Floquet Weyl semimetals, establishing an experimentally feasible strategy for…
Light-Tunable Giant Anomalous Hall Effect in the Flat-Band Magnetic Weyl Semimetal
Tingyan Chen, Shengpu Huang, Jing Fan +3
Achieving a giant anomalous Hall effect (AHE) and enabling its effective tuning are fundamental goals for topological spintronics. Magnetic Weyl semimetals hosting flat bands offer…
Light-induced Odd-parity Magnetism in Conventional Collinear Antiferromagnets
Shengpu Huang, Zheng Qin, Fangyang Zhan +3
Recent studies have drawn growing attention on non-relativistic odd-parity magnetism in the wake of altermagnets. Nevertheless, odd-parity spin splitting is often believed to appea…
Quantum Spin Hall Effect with Extended Topologically Protected Features in Altermangetic Multilayers
Zhiyu Chen, Fangyang Zhan, Zheng Qin +3
Conventional topological classification theory dictates that time-reversal symmetry confines the quantum spin Hall (QSH) effect to a classification, permitting only…
Controllable Weyl Nodes and Fermi Arcs from Floquet Engineering Triple Fermions
Shengpu Huang, Fangyang Zhan, Xianyong Ding +3
Floquet engineering with periodic driving as a powerful tool for designing desirable topological states has been the subject of intense recent studies. Here, we present the applica…
Flexible Control of Chiral Superconductivity in Optically Driven Nodal Point Superconductors with Antiferromagnetism
Zhen Ning, Junjie Zeng, Da-Shuai Ma +2
Recent studies have attracted widespread attention on magnet-superconductor hybrid systems with emergent topological superconductivity. Here, we present the Floquet engineering of…