activity
20242026
collaborators

6 papers

cond-mat.mtrl-sci2026

Hydrostatic Pressure-enhanced correlated magnetism and Chern insulator in moir'e WSe2

Pengfei Jiao, Chenghao Qian, Ning Mao +24

Moiré semiconductors offer flat bands where Coulomb interactions and band topology intertwine, while interlayer coupling plays a central role in forming the moiré potential. Howe…

cond-mat.mes-hall2026

Mechanical sensing of metamagnetic tricriticality in two-dimensional CrI3

Feng Liu, Jiayong Xiao, Shengwei Jiang +2

Layered Ising metamagnets are antiferromagnetic (AF) materials consisting of monolayer Ising ferromagnets coupled to each other via interlayer AF interactions. They exhibit rich ma…

cond-mat.str-el2025

Moiré-modulated valley in twisted bilayer and twisted double-bilayer MoTe

Wanying Chen, Hongyun Zhang, Jinxi Lu +18

Twisted MoTe hosts intriguing correlated quantum phenomena including the fractional quantum anomalous Hall effect in twisted bilayer (t-BL) MoTe near 3.7, which is…

cond-mat.mes-hall2025

From fractional Chern insulators to topological electronic crystals in moiré MoTe2: quantum geometry tuning via remote layer

Feng Liu, Fan Xu, Cheng Xu +18

The quantum geometry of Bloch wavefunctions,encoded in the Berry curvature and quantum metric, is believed to be a decisive ingredient in stabilizing fractional quantum anomalous H…

cond-mat.mes-hall2025

Evidence of competing ground states between fractional Chern insulator and antiferromagnetism in moiré MoTe2

Xumin Chang, Feng Liu, Fan Xu +18

Two-dimensional moire materials present unprecedented opportunities to explore quantum phases of matter arising from the interplay of band topology and strong correlations.One of t…

cond-mat.mes-hall2024

Interplay between topology and correlations in the second moiré band of twisted bilayer MoTe2

Fan Xu, Xumin Chang, Jiayong Xiao +17

Topological flat bands formed in two-dimensional lattice systems offer unique opportunity to study the fractional phases of matter in the absence of an external magnetic field. Cel…