activity
20242026
collaborators

6 papers

cond-mat.str-el2026

Modeling Quantum Geometry for Fractional Chern Insulators with unsupervised learning

Ang-Kun Wu, Louis Primeau, Jingtao Zhang +3

Fractional Chern insulators (FCIs) in moire materials present a unique platform for exploring strongly correlated topological phases beyond the paradigm of ideal quantum geometry.…

cond-mat.str-el2025

Unconventional Fractional Phases in Multi-Band Vortexable Systems

Siddhartha Sarkar, Xiaohan Wan, Ang-Kun Wu +2

In this Letter, we study topological flat bands with distinct features that deviate from conventional Landau level behavior. We show that even in the ideal quantum geometry limit,…

cond-mat.str-el2025

Beyond the Lowest Landau Level: Unlocking More Robust Fractional States Using Flat Chern Bands with Higher Vortexability

Yitong Zhang, Siddhartha Sarkar, Xiaohan Wan +3

Enhancing the many-body gap of a fractional state is crucial for realizing robust fractional excitations. For fractional Chern insulators, existing studies suggest that making flat…

cond-mat.str-el2025

Edge-driven transition between extended quantum anomalous Hall crystal and fractional Chern insulator in rhombohedral graphene multilayers

Zezhu Wei, Ang-Kun Wu, Miguel Gonçalves +1

Fractional Chern insulators (FCI) with fractionally quantized Hall conductance at fractional fillings and an extended quantum anomalous Hall (EQAH) crystal with an integer quantize…

cond-mat.str-el2024

Quantum-metric-induced quantum Hall conductance inversion and reentrant transition in fractional Chern insulators

Ang-Kun Wu, Siddhartha Sarkar, Xiaohan Wan +2

The quantum metric of single-particle wave functions in topological flatbands plays a crucial role in determining the stability of fractional Chern insulating (FCI) states. Here, w…

cond-mat.str-el2024

Doping-induced Quantum Anomalous Hall Crystals and Topological Domain Walls

Miguel Gonçalves, Shi-Zeng Lin

Doping carriers into a correlated quantum ground state offers a promising route to generate new quantum states. The recent advent of moiré superlattices provided a versatile platf…