The Penning trap mass spectrometer SHIPTRAP at GSI Darmstadt allows accurate mass measurements of radionuclides, produced in fusion-evaporation reactions and separated by the velocity filter SHIP from the primary beam. Recently, the masses of the three nobelium isotopes 252-254No were determined. These are the first direct mass measurements of transuranium elements, which provide new anchor points in this region. The heavy nuclides were produced in cold-fusion reactions by irradiating a PbS target with a 48Ca beam, resulting in production rates of the nuclei of interest of about one atom per second. In combination with data from decay spectroscopy our results are used to perform a new atomic-mass evaluation in this region
The masses of very neutron-deficient nuclides close to the astrophysical rp- and νp-process paths ha...
International audienceOn-line mass measurements were performed at the SHIPTRAP Penning trap mass spe...
The masses of very neutron-deficient nuclides close to the astrophysical r p- and nu p-process paths...
The Penning trap mass spectrometer SHIPTRAP at GSI Darmstadt allows accurate mass measurements of ra...
The Penning-trap mass spectrometer SHIPTRAP allows precision mass measurements of rare isotopes prod...
Penning-trap mass spectrometry of radionuclides provides accurate mass values and absolute binding e...
Penning traps are widely used for high-precision mass measurements of radionuclides related to nucle...
SHIPTRAP is an ion trap facility behind the velocity filter SHIP at GSI/Darmstadt. Its aim are preci...
The Penning trap mass spectrometer SHIPTRAP is installed behind the velocity\u2010filter SHIP at GSI...
The Penning trap facility SHIPTRAP at GSI Darmstadt was set up to perform high\u2010precision experi...
Penning-trap mass spectrometry in atomic and nuclear physics has become a well-established and relia...
At GSI in Darmstadt the Penning trap spectrometer SHIPTRAP was set up to perform precision experimen...
Nuclear masses are an important quantity to study nuclear structure since they reflect the sum of al...
The masses of very neutron-deficient nuclides close to the astrophysical r, p- and ν p-process paths...
Das Penningfallen-Massenspektrometer SHIPTRAP wurde gebaut um HochprÄazi-rnsionsmassenmessungen an s...
The masses of very neutron-deficient nuclides close to the astrophysical rp- and νp-process paths ha...
International audienceOn-line mass measurements were performed at the SHIPTRAP Penning trap mass spe...
The masses of very neutron-deficient nuclides close to the astrophysical r p- and nu p-process paths...
The Penning trap mass spectrometer SHIPTRAP at GSI Darmstadt allows accurate mass measurements of ra...
The Penning-trap mass spectrometer SHIPTRAP allows precision mass measurements of rare isotopes prod...
Penning-trap mass spectrometry of radionuclides provides accurate mass values and absolute binding e...
Penning traps are widely used for high-precision mass measurements of radionuclides related to nucle...
SHIPTRAP is an ion trap facility behind the velocity filter SHIP at GSI/Darmstadt. Its aim are preci...
The Penning trap mass spectrometer SHIPTRAP is installed behind the velocity\u2010filter SHIP at GSI...
The Penning trap facility SHIPTRAP at GSI Darmstadt was set up to perform high\u2010precision experi...
Penning-trap mass spectrometry in atomic and nuclear physics has become a well-established and relia...
At GSI in Darmstadt the Penning trap spectrometer SHIPTRAP was set up to perform precision experimen...
Nuclear masses are an important quantity to study nuclear structure since they reflect the sum of al...
The masses of very neutron-deficient nuclides close to the astrophysical r, p- and ν p-process paths...
Das Penningfallen-Massenspektrometer SHIPTRAP wurde gebaut um HochprÄazi-rnsionsmassenmessungen an s...
The masses of very neutron-deficient nuclides close to the astrophysical rp- and νp-process paths ha...
International audienceOn-line mass measurements were performed at the SHIPTRAP Penning trap mass spe...
The masses of very neutron-deficient nuclides close to the astrophysical r p- and nu p-process paths...