The main activity of this project focused on the production and selection of anions, the guidance of the anion beam and the deceleration of that beam, as well as, finally, the trapping of anions originating from that decelerated beam in an ion trap. A dedicated setup to develop techniques for these steps, learn their challenges, and optimize the necessary operations had previously been developed at the AEgIS collaboration. First, modest, results of negative ion generation and trapping had been demonstrated.
This project set out by improving upon these previous results. In particular, the number of negative ions trapped and the lifetime of the ions in the trap needed to be increased significantly.
During the project, significant limitations of the existing setup in both these aspects have been identified, preventing serious attempts of laser manipulation of trapped anions with that setup. Therefore, it was decided to take a leap forward and move on from that “test bed” setup to the actual antimatter experiment apparatus of the AEgIS collaboration.
For that endeavor, the existing anion source and parts of the ion-beam apparatus had to be moved from the previous laboratory to the main AEgIS experimental facility. These parts of the previous setup were integrated into the larger AEgIS apparatus. This means, they had to be mechanically and electronically adapted for operation with that apparatus. Also, they had to be adapted to the different environment conditions, particularly for operation in a high-magnetic-field environment. Thereafter, the anion source was operated again and a beam of anions was injected into the AEgIS apparatus.