The aim of this work is to find out the origin of the anomalous resonance in Be-8 seen in the reactions through excited states in Be-9. We have populated the Be-9 excited states by beta-decay of Li-9. Energy and direction of the two alpha particles has been detected and the neutron spectra reconstructed. In our work we identified the "anomalous resonance" in Be-8 observed in several reaction studies as coming from the decay of the 2.43 and 2.78 MeV states in Be-9. This anomalous resonance appears when the two detected alpha particles are assumed to form a resonance in Be-8. We argued that the main decaying channels for these two levels in Be-9 do not involve Be-8
Resonance-decay spectroscopy is used to study particle-unbound excited states produced in interactio...
An experiment was performed at the Australian National University to study the Be9(Li6,Li6)Be9*→α+α+...
The β-decay of the ^9Li nucleus and the subsequent particle decays of the unbound states of the ^9Be...
The aim of this work is to find out the origin of the anomalous resonance in Be-8 seen in the reacti...
The aim of this work is to find out the origin of the anomalous resonance in 8Be seen in the reacti...
A transfer-reaction experiment of Be-9(Be-9, Be-10)Be-8 was performed at a beam energy of 45 MeV. Ex...
A transfer-reaction experiment of ~9Be(~9Be; ~(10)Be)~8Be was performed at a beam energy of 45 MeV. ...
Excited states in Be-9 from 2 to 9 MeV are studied via beta delayed particle emission from Li-9. The...
Resonance-decay spectroscopy is used to study particle-unbound excited states produced in interactio...
Resonance-decay spectroscopy is used to study particle-unbound excited states produced in interactio...
The first exclusive breakup measurements for the nucleus Be-9 are presented. Breakup via several dis...
Spectra of the Be-9(e, e\u27) reaction have been measured at the Superconducting Darmstadt Electron ...
Spectra of the Be-9(e, e') reaction have been measured at the Superconducting Darmstadt Electron Lin...
Resonance-decay spectroscopy is used to study particle-unbound excited states produced in interactio...
Resonance-decay spectroscopy is used to study particle-unbound excited states produced in interactio...
Resonance-decay spectroscopy is used to study particle-unbound excited states produced in interactio...
An experiment was performed at the Australian National University to study the Be9(Li6,Li6)Be9*→α+α+...
The β-decay of the ^9Li nucleus and the subsequent particle decays of the unbound states of the ^9Be...
The aim of this work is to find out the origin of the anomalous resonance in Be-8 seen in the reacti...
The aim of this work is to find out the origin of the anomalous resonance in 8Be seen in the reacti...
A transfer-reaction experiment of Be-9(Be-9, Be-10)Be-8 was performed at a beam energy of 45 MeV. Ex...
A transfer-reaction experiment of ~9Be(~9Be; ~(10)Be)~8Be was performed at a beam energy of 45 MeV. ...
Excited states in Be-9 from 2 to 9 MeV are studied via beta delayed particle emission from Li-9. The...
Resonance-decay spectroscopy is used to study particle-unbound excited states produced in interactio...
Resonance-decay spectroscopy is used to study particle-unbound excited states produced in interactio...
The first exclusive breakup measurements for the nucleus Be-9 are presented. Breakup via several dis...
Spectra of the Be-9(e, e\u27) reaction have been measured at the Superconducting Darmstadt Electron ...
Spectra of the Be-9(e, e') reaction have been measured at the Superconducting Darmstadt Electron Lin...
Resonance-decay spectroscopy is used to study particle-unbound excited states produced in interactio...
Resonance-decay spectroscopy is used to study particle-unbound excited states produced in interactio...
Resonance-decay spectroscopy is used to study particle-unbound excited states produced in interactio...
An experiment was performed at the Australian National University to study the Be9(Li6,Li6)Be9*→α+α+...
The β-decay of the ^9Li nucleus and the subsequent particle decays of the unbound states of the ^9Be...