38 citations · 68 across the 5 of their papers we have counts for
10 papers
Review of the tight-binding method applicable to the properties of moiré superlattices
Xueheng Kuang, Federico Escudero, Pierre A. Pantaleón +2
Moiré superlattices have emerged as a versatile platform for exploring a wide range of ex- otic quantum phenomena. Unlike angstrom-scale materials, the moiré length-scale system co…
Optical properties and plasmons in moiré structures
Xueheng Kuang, Pierre A. Pantaleón Peralta, Jose Angel Silva-Guillén +3
The discoveries of numerous exciting phenomena in twisted bilayer graphene (TBG) are stimulating significant investigations on moiré structures that possess a tunable moiré potenti…
Charge fluctuations, phonons and superconductivity in multilayer graphene
Ziyan Li, Xueheng Kuang, Alejandro Jimeno-Pozo +4
Motivated by the recent experimental detection of superconductivity in Bernal bilayer (AB) and rhombohedral trilayer (ABC) graphene, we study the emergence of superconductivity in…
TBPLaS: a Tight-Binding Package for Large-scale Simulation
Yunhai Li, Zhen Zhan, Xueheng Kuang +2
TBPLaS is an open-source software package for the accurate simulation of physical systems with arbitrary geometry and dimensionality utilizing the tight-binding (TB) theory. It has…
Flat-band plasmons in twisted bilayer transition metal dichalcogenides
Xueheng Kuang, Zhen Zhan, Shengjun Yuan
Twisted bilayer transition metal dichalcogenides are ideal platforms to study flat-band phenomena. In this paper, we investigate flat-band plasmons in the hole-doped twisted bilaye…
Magic angle and plasmon mode engineering in twisted trilayer graphene with pressure
Zewen Wu, Xueheng Kuang, Zhen Zhan +1
Recent experimental and theoretical investigations demonstrate that twisted trilayer graphene (tTLG) is a highly tunable platform to study the correlated insulating states, ferroma…