International audienceThe properties of nuclei with extreme neutron–to–proton ratios, far from those naturally occurring on Earth, are key to understand nuclear forces and how nucleons hold together to form nuclei. 7H, with six neutrons and a single proton, is the nuclear system with the most unbalanced neutron–to–proton ratio known so far. However, its sheer existence and properties are still a challenge for experimental efforts and theoretical models. Here we report experimental evidences on the formation of 7H as a resonance, detected with independent observables, and the first measurement of the structure of its ground state. The resonance is found at ∼0.7 MeV above the 3H+4n mass, with a narrow width of ∼0.2 MeV and a 1/2+ spin and par...
The 7H and 6H nuclear systems were investigated via transfer reactions with a 8He beam at 15.4A MeV ...
The 7H resonance was produced via one-proton transfer reaction with a 8He beam at 15.4A MeV and a 12...
The present work contains two parts, both devoted to the investigation of light nuclei. In the first...
International audienceThe properties of nuclei with extreme neutron–to–proton ratios, far from those...
The properties of nuclei with extreme neutron–to–proton ratios, far from those naturally occurring o...
International audienceThe properties of nuclei with extreme neutron–to–proton ratios reveal the limi...
The properties of nuclei with extreme neutron–to–proton ratios reveal the limitations of state-ofthe...
The properties of nuclei with extreme neutron–to–proton ratios reveal the limitations of state-ofthe...
International audienceWe have investigated the possible existence of a 7H resonant state, considered...
Low-lying resonance states in "7He ("6He + n), formed after fragmentation reactions of a 2...
A study of the neutron structure of the ground state of 7He has been performed by means of registrat...
The extremely neutron-rich system H7 was studied in the direct H2(He8,He3)H7 transfer reaction with ...
Attempt to observe a 7H resonance produced in the reaction 2H(8He,3He)7H resulted only in setting a ...
The 7H and 6H nuclear systems were investigated via transfer reactions with a 8He beam at 15.4A MeV ...
The 7H resonance was produced via one-proton transfer reaction with a 8He beam at 15.4A MeV and a 12...
The present work contains two parts, both devoted to the investigation of light nuclei. In the first...
International audienceThe properties of nuclei with extreme neutron–to–proton ratios, far from those...
The properties of nuclei with extreme neutron–to–proton ratios, far from those naturally occurring o...
International audienceThe properties of nuclei with extreme neutron–to–proton ratios reveal the limi...
The properties of nuclei with extreme neutron–to–proton ratios reveal the limitations of state-ofthe...
The properties of nuclei with extreme neutron–to–proton ratios reveal the limitations of state-ofthe...
International audienceWe have investigated the possible existence of a 7H resonant state, considered...
Low-lying resonance states in "7He ("6He + n), formed after fragmentation reactions of a 2...
A study of the neutron structure of the ground state of 7He has been performed by means of registrat...
The extremely neutron-rich system H7 was studied in the direct H2(He8,He3)H7 transfer reaction with ...
Attempt to observe a 7H resonance produced in the reaction 2H(8He,3He)7H resulted only in setting a ...
The 7H and 6H nuclear systems were investigated via transfer reactions with a 8He beam at 15.4A MeV ...
The 7H resonance was produced via one-proton transfer reaction with a 8He beam at 15.4A MeV and a 12...
The present work contains two parts, both devoted to the investigation of light nuclei. In the first...