5 papers
Atomic-scale control of substrate-spin coupling via vertical manipulation of a 2D metal-organic framework
Benjamin Lowe, Bernard Field, Dhaneesh Kumar +9
Two-dimensional (2D) materials with frustrated crystal geometries can host strongly correlated electrons, potentially leading to a range of exotic many-body quantum phases such as…
Robust Room-Temperature Polariton Condensation and Lasing in Scalable FAPbBr Perovskite Microcavities
Mateusz Król, Mitko Oldfield, Matthias Wurdack +6
Exciton-polariton condensation in direct bandgap semiconductors strongly coupled to light enables a broad range of fundamental studies and applications like low-threshold and elect…
Upper Bound Estimate of the Electronic Scattering Potential of a Weakly Interacting Molecular Film on a Metal
Dhaneesh Kumar, Matthew Hendy, Jack Hellerstedt +4
Thin organic films and two-dimensional (2D) molecular assemblies on solid surfaces yield the potential for applications in molecular electronics, optoelectronics, catalysis, and se…
Electric Field Control of Molecular Charge State in a Single-Component 2D Organic Nanoarray
Dhaneesh Kumar, Cornelius Krull, Yuefeng Yin +2
Quantum dots (QD) with electric-field-controlled charge state are promising for electronics applications, e.g., digital information storage, single-electron transistors and quantum…
Local gate control of Mott metal-insulator transition in a 2D metal-organic framework
Benjamin Lowe, Bernard Field, Jack Hellerstedt +5
Electron-electron interactions in materials lead to exotic many-body quantum phenomena including Mott metal-insulator transitions (MITs), magnetism, quantum spin liquids, and super…