activity
20242026
most citedTwisted bilayer graphene from first-principles: structural and electronic properties

2 citations · 4 across the 4 of their papers we have counts for

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6 papers · 1 filter

cond-mat.str-el2025

Switching topological states via uniaxial strain in 2D materials

Joshua J. Sanchez, Raagya Aurora, Daniel Bennett +3

In topological materials, dissipationless edge currents are protected against local defect scattering by the bulk inverted band structure and band gap. We propose that large uniaxi…

cond-mat.str-el2025

Universal Symmetries in Twisted Moiré Materials

Mohammed M. Al Ezzi, Albert Zhu, Daniel Bennett +2

Two-dimensional multi-layer materials with an induced moiré pattern, either due to strain or relative twist between layers, provide a versatile platform for exploring strongly cor…

cond-mat.mtrl-sci2025

Alkali Intercalation of Moire Heterostructures for Low-Loss Plasmonics

Ali Ghorashi, Nicholas Rivera, Ravishankar Sundararaman +3

Two-dimensional metals generically support gapless plasmons with wavelengths well below the wavelength of free-space radiation at the same frequency. Typically, however, this subst…

cond-mat.mes-hall2025

Tunable atomically enhanced moiré Berry curvatures in twisted triple bilayer graphene

Konstantin Davydov, Ziyan Zhu, Noah Friedman +8

We report a twisted triple bilayer graphene platform consisting of three units of Bernal bilayer graphene consecutively twisted at 1.49° and 1.68°. We demonstrate the atomic reco…

cond-mat.mtrl-sci2025

Stacking-dependent electronic structure of ultrathin perovskite bilayers

Daniel T. Larson, Daniel Bennett, Abduhla Ali +4

Twistronics has received much attention as a new method to manipulate the properties of 2D van der Waals structures by introducing moiré patterns through a relative rotation betwe…

cond-mat.mtrl-sci2025

Stacking-engineered ferroelectricity and multiferroic order in van der Waals magnets

Daniel Bennett, Gabriel Martínez-Carracedo, Xu He +4

Two-dimensional (2D) materials that exhibit spontaneous magnetization, polarization or strain (referred to as ferroics) have the potential to revolutionize nanotechnology by enhanc…