5 papers
Apparent Resonance Splitting in Self-Coupled Excitonic Systems
Avishek Sarbajna, Qitong Li, Dorte Rubæk Danielsen +6
Thin films of high-refractive-index excitonic materials enable self-coupling by simultaneously supporting intrinsic excitonic transitions and optical resonances. These optical reso…
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…
Interface engineering of van der Waals heterostructures towards energy-efficient quantum devices operating at high temperatures
Manh-Ha Doan, Peter Bøggild
Quantum devices, which rely on quantum mechanical effects for their operation, may offer advantages, such as reduced dimensions, increased speed, and energy efficiency, compared to…
Quantitative mapping of smooth topographic landscapes produced by thermal scanning-probe lithography
Camilla H. Sørensen, Magnus V. Nielsen, Sander J. Linde +7
Scanning probe microscopy (SPM) is a powerful technique for mapping nanoscale surface properties through tip-sample interactions. Thermal scanning-probe lithography (tSPL) is an ad…
Improving Electrical Contact Quality and Extraordinary Magnetoresistance in High Mobility III-V Semiconductors
Thierry Désiré Pomar, Tristan Steegemans, Sreejith Kumar +8
Magnetometers based on the extraordinary magnetoresistance (EMR) effect are promising for applications which demand high sensitivity combined with room temperature operation but th…