We report on the successful coupling of the Penning-trap mass spectrometry setup TRIGA-TRAP to the research reactor TRIGA Mainz. This offers the possibility to perform direct high-precision mass measurements of short-lived nuclei produced in neutron-induced fission of a 235U target located near the reactor core. An aerosol-based gas-jet system is used for efficient transport of short-lived neutron-rich nuclei from the target chamber to a surface ion source. In conjunction with new ion optics and extended beam monitoring capabilities, the experimental setup has been fully commissioned. The design of the surface ion source, efficiency studies and first results are presented
The nuclear masses reflect the sum of all interactions inside a nucleus. Their precise knowledge can...
A linear Paul trap for cooling of ion beams, the former cooler for emittance elimination radiofreque...
The SHIPTRAP Penning trap mass spectrometer has been designed and constructed to measure the mass of...
The TRIGA-TRAP mass spectrometer and the TRIGA-LASER laser spectroscopy setup, forming the TRIGA-SPE...
The dominant fraction of elements heavier than iron was created in stellar nucleosynthesis by neutro...
Das TRIGA-SPEC Experiment ist für hochpräzise Messungen von Grundzustandseigenschaften exotischer Nu...
The research reactor TRIGA Mainz is an ideal facility to provide neutron-rich nuclides with producti...
Nuclear masses are an important quantity to study nuclear structure since they reflect the sum of al...
Nuclear masses are an important quantity to study nuclear structure since they reflect the sum of al...
Precise experimental data of the ground-state properties of heavy nuclides are required to test the ...
Nuclear masses are an important quantity to study nuclear structure since they reflect the sum of al...
The dominant fraction of elements heavier than iron was created in stellar nucleosynthesis by neutro...
The observation of neutrinoless double-electron capture would prove the Majorana character of neutri...
We report on the optimization of the gas-jet system employed to couple the TRIGA-SPEC experiment to ...
The highest precision in the determination of nuclear and atomic masses can be achieved by Penning t...
The nuclear masses reflect the sum of all interactions inside a nucleus. Their precise knowledge can...
A linear Paul trap for cooling of ion beams, the former cooler for emittance elimination radiofreque...
The SHIPTRAP Penning trap mass spectrometer has been designed and constructed to measure the mass of...
The TRIGA-TRAP mass spectrometer and the TRIGA-LASER laser spectroscopy setup, forming the TRIGA-SPE...
The dominant fraction of elements heavier than iron was created in stellar nucleosynthesis by neutro...
Das TRIGA-SPEC Experiment ist für hochpräzise Messungen von Grundzustandseigenschaften exotischer Nu...
The research reactor TRIGA Mainz is an ideal facility to provide neutron-rich nuclides with producti...
Nuclear masses are an important quantity to study nuclear structure since they reflect the sum of al...
Nuclear masses are an important quantity to study nuclear structure since they reflect the sum of al...
Precise experimental data of the ground-state properties of heavy nuclides are required to test the ...
Nuclear masses are an important quantity to study nuclear structure since they reflect the sum of al...
The dominant fraction of elements heavier than iron was created in stellar nucleosynthesis by neutro...
The observation of neutrinoless double-electron capture would prove the Majorana character of neutri...
We report on the optimization of the gas-jet system employed to couple the TRIGA-SPEC experiment to ...
The highest precision in the determination of nuclear and atomic masses can be achieved by Penning t...
The nuclear masses reflect the sum of all interactions inside a nucleus. Their precise knowledge can...
A linear Paul trap for cooling of ion beams, the former cooler for emittance elimination radiofreque...
The SHIPTRAP Penning trap mass spectrometer has been designed and constructed to measure the mass of...