activity
20202025
most citedTracing orbital images on ultrafast time scales

67 citations · 68 across the 5 of their papers we have counts for

collaborators

5 papers

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-sci2022

Benchmarking theoretical electronic structure methods with photoemission orbital tomography

Anja Haags, Xiaosheng Yang, Larissa Egger +10

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

physics.chem-ph2021

Momentum-space imaging of σ-orbitals for chemical analysis

Anja Haags, Xiaosheng Yang, Larissa Egger +11

Tracing the modifications of molecules in surface chemical reactions benefits from the possibility to image their orbitals. While delocalized frontier orbitals with π-character are…

physics.chem-ph2020★ 67 cited

Tracing orbital images on ultrafast time scales

Robert Wallauer, Miriam Raths, Klaus Stallberg +10

Frontier orbitals, i.e., the highest occupied and lowest unoccupied orbitals of a molecule, generally determine molecular properties, such as chemical bonding and reactivities. Con…

cond-mat.mtrl-sci2020★ 1 cited

kMap.py: A Python program for simulation and data analysis in photoemission tomography

Dominik Brandstetter, Xiaosheng Yang, Daniel Lüftner +2

For organic molecules adsorbed as well-oriented ultra-thin films on metallic surfaces, angle-resolved photoemission spectroscopy has evolved into a technique called photoemission t…