30 citations · 62 across the 7 of their papers we have counts for
7 papers
Triplet Rydberg states of aluminum monofluoride
N. Walter, M. Doppelbauer, S. Schaller +5
Aluminum monofluoride (AlF) is a suitable molecule for laser cooling and trapping. Such experiments require an extensive spectroscopic characterization of the electronic structure.…
Full quantum state control of chiral molecules
JuHyeon Lee, Elahe Abdiha, Boris G. Sartakov +2
Controlling the internal quantum states of chiral molecules for a selected enantiomer has a wide range of fundamental applications. Using tailored microwave fields, a chosen rotati…
The influence of microwave pulse conditions on enantiomer-specific state transfer
JuHyeon Lee, Johannes Bischoff, A. O. Hernandez-Castillo +4
We report a combined experimental and theoretical study on the influence of microwave pulse durations on enantiomer-specific state transfer. Two triads of rotational states within…
Cryogenic Buffer Gas beams of AlF, CaF, MgF, YbF, Al, Ca, Yb and NO -- a comparison
Sidney C. Wright, Maximilian Doppelbauer, Simon Hofsäss +4
Cryogenic buffer gas beams are central to many cold molecule experiments. Here, we use absorption and fluorescence spectroscopy to directly compare molecular beams of AlF, CaF, MgF…
Spectroscopic characterization of the a state of aluminum monofluoride
Nicole Walter, Maximilian Doppelbauer, Silvio Marx +6
Spectroscopic studies of aluminum monofluoride (AlF) have revealed its highly favorable properties for direct laser cooling. All lines of the strong A X$^1Σ^+…
Quantitative study of enantiomer-specific state transfer
JuHyeon Lee, Johannes Bischoff, A. O. Hernandez-Castillo +3
We here report on a quantitative study of Enantiomer-Specific State Transfer (ESST), performed in a pulsed, supersonic molecular beam. The chiral molecule 1-indanol is cooled to lo…