5 papers
Terahertz s-SNOM reveals nonlocal nanoscale conductivity of graphene
Henrik B. Lassen, William V. Carstensen, Leonid Iliushyn +4
As photonic and electronic technologies approach nanometre length scales and terahertz operating speeds, electrical conductivity can no longer be treated as a purely local material…
Enhanced and directional light emission from two-dimensional excitons using Mie voids
Avishek Sarbajna, Ganesh Ghimire, Ilia Breev +5
Controlling light emission at the nanoscale has important applications in solid-state lighting, displays, and quantum light sources. Achieving this control requires both enhanced l…
Recommendations and tools to enable reproducibility in 2D materials research
Peter Bøggild, Timothy John Booth, Bjarke Sørensen Jessen +9
Research on 2D materials has achieved significant milestones and fuelled a rapidly growing industrial sector. This progress, however, is accompanied by challenges in reproducibilit…
Gradient Electronic Landscapes in van der Waals Heterostructures
Nolan Lassaline, Camilla H. Sørensen, Giulia Meucci +7
Two-dimensional (2D) materials such as graphene and hexagonal boron nitride (hBN) provide a versatile platform for quantum electronics. Experiments generally require encapsulating…
Fourier-Tailored Light-Matter Coupling in van der Waals Heterostructures
Dorte R. Danielsen, Nolan Lassaline, Sander J. Linde +7
Dielectric structures can support low-absorption optical modes, which are attractive for engineering light-matter interactions with excitonic resonances in two-dimensional (2D) mat…