activity
20182020
most citedAtomically Thin CrCl3: An in-Plane Layered Antiferromagnetic Insulator

381 citations · 876 across the 5 of their papers we have counts for

collaborators

9 papers

cond-mat.mes-hall202029 cited

Spontaneous valley polarization of interacting carriers in a monolayer semiconductor

Jing Li, Mateusz Goryca, Nathan P. Wilson +3

We report magneto-absorption spectroscopy of gated WSe monolayers in high magnetic fields up to 60~T. When doped with a 2D Fermi sea of mobile holes, well-resolved sequences of…

cond-mat.mes-hall2020277 cited

Layer-Resolved Magnetic Proximity Effect in van der Waals Heterostructures

Ding Zhong, Kyle L. Seyler, Xiayu Linpeng +8

Magnetic proximity effects are crucial ingredients for engineering spintronic, superconducting, and topological phenomena in heterostructures. Such effects are highly sensitive to…

cond-mat.mes-hall2020189 cited

Valley Phonons and Exciton Complexes in a Monolayer Semiconductor

Minhao He, Pasqual Rivera, Dinh Van Tuan +10

The coupling between spin, charge, and lattice degrees of freedom plays an important role in a wide range of fundamental phenomena. Monolayer semiconducting transitional metal dich…

cond-mat.mes-hall2019

Visualizing electrostatic gating effects in two-dimensional heterostructures

Paul V. Nguyen, Natalie C. Teutsch, Nathan P. Wilson +9

The ability to directly observe electronic band structure in modern nanoscale field-effect devices could transform understanding of their physics and function. One could, for examp…

cond-mat.mes-hall2019381 cited

Atomically Thin CrCl3: An in-Plane Layered Antiferromagnetic Insulator

Xinghan Cai, Tiancheng Song, Nathan P. Wilson +10

The recent discovery of magnetism in atomically thin layers of van der Waals (vdW) crystals has created new opportunities for exploring magnetic phenomena in the two-dimensional (2…

cond-mat.mes-hall2018

Signatures of moiré-trapped valley excitons in MoSe/WSe heterobilayers

Kyle L. Seyler, Pasqual Rivera, Hongyi Yu +6

The creation of moiré patterns in crystalline solids is a powerful approach to manipulate their electronic properties, which are fundamentally influenced by periodic potential land…