Precision determinations of ground state or even isomeric state masses reveal fingerprints of nuclear structure. In particular, at the limits of existence for very neutron-rich or -deficient isotopes, one can extract detailed information about nuclear structure from separation energies or binding energies. Mass measurements are important to uncover new phenomena, to test new theoretical predictions, or to refine model approaches. For example, the N = 28 shell has proven more stable than previously expected; however, the predicted new “magic” number at N = 34 in the K and Ca isotopes has yet to be confirmed experimentally. For these neutron-rich nuclei, the inclusion of three-body forces leads to significantly better predictions of the groun...
High-precision nuclear mass measurements are extremely important in furthering our understanding of ...
International audienceA precision mass investigation of the neutron-rich titanium isotopes Ti51-55 w...
New measurements of the masses of the isotopes⁸,⁹,¹¹Li were made using recently commissioned TITAN P...
Precision determinations of ground state or even isomeric state masses reveal fingerprints of nuclea...
TITAN (TRIUMF's Ion Trap for Atomic and Nuclear science) is a system of multiple ion traps installed...
Measurements of the atomic mass further our understanding in many disciplines from metrology to phys...
TITAN (TRIUMF’s Ion Trap for Atomic and Nuclear science) at TRIUMF’s rare isotope beam facility ISAC...
TRIUMF's Ion Trap for Atomic and Nuclear science (TITAN) constitutes the only high precision mass me...
Nuclear mass measurements of isotopes are key to improving our understanding of nuclear structure ac...
The introduction of Paul traps, in particular linear radio-frequency quadrupoles in the early 2000s,...
High-precision atomic mass measurements are vital for the description of nuclear structure, investig...
High-precision and accurate atomic mass measurements are vital for the description of nuclear struct...
Nuclear mass values are an important experimental input for research in nuclear theory, astrophysics...
A precision mass investigation of the neutron-rich titanium isotopes <sup>51−55</sup>Ti was performe...
A precision mass investigation of the neutron-rich titanium isotopes 51 − 55 Ti was performed at T...
High-precision nuclear mass measurements are extremely important in furthering our understanding of ...
International audienceA precision mass investigation of the neutron-rich titanium isotopes Ti51-55 w...
New measurements of the masses of the isotopes⁸,⁹,¹¹Li were made using recently commissioned TITAN P...
Precision determinations of ground state or even isomeric state masses reveal fingerprints of nuclea...
TITAN (TRIUMF's Ion Trap for Atomic and Nuclear science) is a system of multiple ion traps installed...
Measurements of the atomic mass further our understanding in many disciplines from metrology to phys...
TITAN (TRIUMF’s Ion Trap for Atomic and Nuclear science) at TRIUMF’s rare isotope beam facility ISAC...
TRIUMF's Ion Trap for Atomic and Nuclear science (TITAN) constitutes the only high precision mass me...
Nuclear mass measurements of isotopes are key to improving our understanding of nuclear structure ac...
The introduction of Paul traps, in particular linear radio-frequency quadrupoles in the early 2000s,...
High-precision atomic mass measurements are vital for the description of nuclear structure, investig...
High-precision and accurate atomic mass measurements are vital for the description of nuclear struct...
Nuclear mass values are an important experimental input for research in nuclear theory, astrophysics...
A precision mass investigation of the neutron-rich titanium isotopes <sup>51−55</sup>Ti was performe...
A precision mass investigation of the neutron-rich titanium isotopes 51 − 55 Ti was performed at T...
High-precision nuclear mass measurements are extremely important in furthering our understanding of ...
International audienceA precision mass investigation of the neutron-rich titanium isotopes Ti51-55 w...
New measurements of the masses of the isotopes⁸,⁹,¹¹Li were made using recently commissioned TITAN P...