With the Penning-trap mass spectrometer SHIPTRAP at GSI, Darmstadt, it is possible to investigate exotic nuclei in the region of the heaviest elements. Few years ago, challenging experiments led to the direct measurements of the masses of neutron-deficient isotopes with Z = 102,103 around N = 152. Thanks to recent advances in cooling and ion-manipulation techniques, a major technical upgrade of the setup has been recently accomplished to boost its efficiency. At present, the gap to reach more rare and shorter-lived species at the limits of the nuclear landscape has been narrowed.status: publishe
The recently confirmed neutron-shell closure at N ¼ 32 has been investigated for the first time belo...
Penning-trap mass spectrometry of radionuclides provides accurate mass values and absolute binding e...
The nuclear shell model predicts that the next doubly magic shell-closure beyond "2"0"...
With the Penning-trap mass spectrometer SHIPTRAP at GSI, Darmstadt, it is possible to investigate ex...
With the Penning-trap mass spectrometer SHIPTRAP at GSI, Darmstadt, it is possible to investigate ex...
International audienceWith the Penning-trap mass spectrometer SHIPTRAP at GSI, Darmstadt, it is poss...
International audienceWith the Penning-trap mass spectrometer SHIPTRAP at GSI, Darmstadt, it is poss...
With the Penning-trap mass spectrometer SHIPTRAP at GSI, Darmstadt, it is possible to investigate ex...
With the Penning-trap mass spectrometer SHIPTRAP at GSI, Darmstadt, it is possible to investigate ex...
Atomic nuclei far from stability continue to challenge our understanding. For example, theoretical m...
Atomic nuclei far from stability continue to challenge our understanding. For example, theoretical m...
Penning traps are widely used for high-precision mass measurements of radionuclides related to nucle...
Direct mass measurements in the region of the heaviest elements were performed with the Penning-trap...
Direct mass measurements in the region of the heaviest elements were performed with the Penning-trap...
It is expected that the cross section for super-heavy nuclei production of Z > 118 is dropping into ...
The recently confirmed neutron-shell closure at N ¼ 32 has been investigated for the first time belo...
Penning-trap mass spectrometry of radionuclides provides accurate mass values and absolute binding e...
The nuclear shell model predicts that the next doubly magic shell-closure beyond "2"0"...
With the Penning-trap mass spectrometer SHIPTRAP at GSI, Darmstadt, it is possible to investigate ex...
With the Penning-trap mass spectrometer SHIPTRAP at GSI, Darmstadt, it is possible to investigate ex...
International audienceWith the Penning-trap mass spectrometer SHIPTRAP at GSI, Darmstadt, it is poss...
International audienceWith the Penning-trap mass spectrometer SHIPTRAP at GSI, Darmstadt, it is poss...
With the Penning-trap mass spectrometer SHIPTRAP at GSI, Darmstadt, it is possible to investigate ex...
With the Penning-trap mass spectrometer SHIPTRAP at GSI, Darmstadt, it is possible to investigate ex...
Atomic nuclei far from stability continue to challenge our understanding. For example, theoretical m...
Atomic nuclei far from stability continue to challenge our understanding. For example, theoretical m...
Penning traps are widely used for high-precision mass measurements of radionuclides related to nucle...
Direct mass measurements in the region of the heaviest elements were performed with the Penning-trap...
Direct mass measurements in the region of the heaviest elements were performed with the Penning-trap...
It is expected that the cross section for super-heavy nuclei production of Z > 118 is dropping into ...
The recently confirmed neutron-shell closure at N ¼ 32 has been investigated for the first time belo...
Penning-trap mass spectrometry of radionuclides provides accurate mass values and absolute binding e...
The nuclear shell model predicts that the next doubly magic shell-closure beyond "2"0"...