activity
20242026
collaborators

5 papers

cond-mat.mtrl-sci2026

Tracing the film structure of an organic semiconductor with photoemission orbital tomography

Monja Stettner, Siegfried Kaidisch, Andrey V. Matetskiy +7

Photoemission orbital tomography (POT) is a powerful tool for investigating the orbitals and electronic band structure of oriented layers of organic molecules. In many cases, POT a…

cond-mat.mes-hall2026

Subcycle videography of lightwave-driven Landau-Zener-Majorana transitions in graphene

Vincent Eggers, Giacomo Inzani, Manuel Meierhofer +14

Strong light fields have unlocked previously unthinkable possibilities to tailor coherent electron trajectories, engineer band structures and shape emergent phases of matter all-op…

cond-mat.mtrl-sci2025

Observing the spatial and temporal evolution of exciton wave functions

Marcel Theilen, Siegfried Kaidisch, Monja Stettner +12

Excitons, the correlated electron-hole pairs governing optical and transport properties in organic semiconductors, have long resisted direct experimental access to their full quant…

physics.chem-ph2025

Tomographic identification of all molecular orbitals in a wide binding energy range

Anja Haags, Dominik Brandstetter, Xiaosheng Yang +11

In the past decade, photoemission orbital tomography (POT) has evolved into a powerful tool to investigate the electronic structure of organic molecules adsorbed on surfaces. Here…

cond-mat.mtrl-sci2024

Epitaxial growth of mono- and (twisted) multilayer graphene on SiC(0001)

Hao Yin, Mark Hutter, Christian Wagner +3

To take full advantage of twisted bilayers of graphene or other two-dimensional materials, it is essential to precisely control the twist angle between the stacked layers, as this…