We measure chemical reactions between a single trapped 174Yb+ ion and ultracold Li2 dimers. This produces LiYb+molecular ions that we detect via mass spectrometry. We explain the reaction rates by modeling the dimer density as a function of the magnetic field and obtain excellent agreement when we assume the reaction to follow the Langevin rate. Our results present a novel approach towards the creation of cold molecular ions and point to the exploration of ultracold chemistry in ion molecule collisions. What is more, with a detection sensitivity below molecule densities of 1014 m-3we provide a new method to detect low-density molecular gases
There is at present great interest in the properties of ultracold molecules. Molecules are created i...
A universal method has been developed in our group for measuring the spectra of molecular ions in a ...
Impurity physics is a traditional topic in condensed matter physics that nowadays is being explored ...
M. Drewsen, I. Jensen, J. Lindballe, N. Nissen, R. Martinussen, A. Mortensen, P. Staanum and D. Voig...
We study cold collisions between trapped ions and trapped atoms in the semiclassical (Langevin) regi...
We present the first observation of ultracold LiCs molecules. The molecules are formed in a two-spec...
The recent development of a range of techniques for producing cold atoms and molecules at very low t...
We study the evolution of a cold single BaRb+ molecule while it continuously collides with ultracold...
This Dissertation details the development of state-of-the-art hybrid atom-ion trapping architecture ...
The generation and study of 'cold' gas-phase molecules characterised by very low translational tempe...
Cryogenic radiofrequency ion traps have become a versatile tool to study the spectroscopy and state-...
This thesis describes the combination of two sources of cold atomic or molecular species which can b...
The frontiers of chemical research have shifted from all-neutral cold chemistry to charged-neutral c...
A promising new approach for studying cold ion-molecule chemical reactions is the combination of las...
Ultracold cold molecular ions promise new directions in various studies of fundamental physics, such...
There is at present great interest in the properties of ultracold molecules. Molecules are created i...
A universal method has been developed in our group for measuring the spectra of molecular ions in a ...
Impurity physics is a traditional topic in condensed matter physics that nowadays is being explored ...
M. Drewsen, I. Jensen, J. Lindballe, N. Nissen, R. Martinussen, A. Mortensen, P. Staanum and D. Voig...
We study cold collisions between trapped ions and trapped atoms in the semiclassical (Langevin) regi...
We present the first observation of ultracold LiCs molecules. The molecules are formed in a two-spec...
The recent development of a range of techniques for producing cold atoms and molecules at very low t...
We study the evolution of a cold single BaRb+ molecule while it continuously collides with ultracold...
This Dissertation details the development of state-of-the-art hybrid atom-ion trapping architecture ...
The generation and study of 'cold' gas-phase molecules characterised by very low translational tempe...
Cryogenic radiofrequency ion traps have become a versatile tool to study the spectroscopy and state-...
This thesis describes the combination of two sources of cold atomic or molecular species which can b...
The frontiers of chemical research have shifted from all-neutral cold chemistry to charged-neutral c...
A promising new approach for studying cold ion-molecule chemical reactions is the combination of las...
Ultracold cold molecular ions promise new directions in various studies of fundamental physics, such...
There is at present great interest in the properties of ultracold molecules. Molecules are created i...
A universal method has been developed in our group for measuring the spectra of molecular ions in a ...
Impurity physics is a traditional topic in condensed matter physics that nowadays is being explored ...