collaborators

5 papers

cond-mat.mtrl-sci2025

Bloch Oscillations and Landau-Zener Transitions in Flat-Band Lattices with Quadratic and Linear Band Touchings

Chenhaoyue Wang, Carlos J. Garcia-Cervera, Amartya S. Banerjee

Bloch oscillations (BOs) describe the coherent oscillatory motion of electrons in a periodic lattice under a constant external electric field. Deviations from pure harmonic wave pa…

cond-mat.mtrl-sci2025

Multiscale analysis of large twist ferroelectricity and swirling dislocations in bilayer hexagonal boron nitride

Md Tusher Ahmed, Chenhaoyue Wang, Amartya S. Banerjee +1

With its atomically thin structure and intrinsic ferroelectric properties, heterodeformed bilayer hexagonal boron nitride (hBN) has gained prominence in next-generation non-volatil…

cond-mat.mtrl-sci2025

Surprisingly High Redundancy in Electronic Structure Data Across Materials Explained by Low Intrinsic Dimensionality

Sazzad Hossain, Ponkrshnan Thiagarajan, Shashank Pathrudkar +4

Machine learning (ML) models for electronic structure typically rely on large datasets generated by computationally expensive Kohn-Sham density functional theory calculations, as i…

cond-mat.str-el2025

Strain-Tunable Topological Phase Transitions in Line- and Split-Graph Flat-Band Lattices

Shivam Sharma, Amartya S. Banerjee

In recent years, materials with topological flat bands have attracted significant attention due to their association with extraordinary transport properties and strongly correlated…

cond-mat.mtrl-sci2025

Dirac Fermions and Flat Bands in Phosphorus Carbide Nanotubes: Structural and Quantum Phase Transitions in a Quasi-One-Dimensional Material

Shivam Sharma, Chenhaoyue Wang, Hsuan Ming Yu +1

Chemically realistic quasi-one-dimensional (1D) materials in which Dirac fermions and highly degenerate flat bands coexist intrinsically at the Fermi level are exceedingly rare, wh…