activity
20182020
most citedA pathway to ultracold bosonic ground state molecules

8 citations · 8 across the 2 of their papers we have counts for

collaborators

5 papers

cond-mat.quant-gas2020

An Ultracold Gas of Bosonic Ground-State Molecules

Kai K. Voges, Philipp Gersema, Mara Meyer zum Alten Borgloh +4

We report the creation of ultracold bosonic dipolar molecules in their absolute rovibrational ground state. Starting from weakly bound molecules i…

physics.atom-ph2019

Beyond Born-Oppenheimer approximation in ultracold atomic collisions

Eberhard Tiemann, Philipp Gersema, Kai K. Voges +3

We report on deviations beyond the Born-Oppenheimer approximation in the potassium inter-atomic potentials. Identifying three up-to-now unknown -wave Feshbach resonances, we sig…

cond-mat.quant-gas2019

Formation of ultracold weakly bound dimers of bosonic

Kai K. Voges, Philipp Gersema, Torsten Hartmann +3

We create weakly bound bosonic molecules in a mixture of ultracold and . The creation is done in the vicinity…

cond-mat.quant-gas20198 cited

A pathway to ultracold bosonic ground state molecules

Kai K. Voges, Philipp Gersema, Torsten Hartmann +3

We spectroscopically investigate a pathway for the conversion of Feshbach molecules into rovibronic ground state molecules via STImulated Raman Ad…

physics.atom-ph2018

Type-II Zeeman slowing: Characterization and comparison to conventional radiative beam slowing schemes

Maurice Petzold, Paul Kaebert, Philipp Gersema +4

We describe a novel Zeeman slowing method reported in (Petzold et al (2018 New J. Phys. 20 042001)) and compare it to conventional radiative beam slowing schemes. The scheme is des…