P-Wave Nuclear Halos in 8 B and 11 Be
Liu Zu-Hua, Jing-Dong Bao
Abstract
Open-access reader
Liu Zu-Hua, Jing-Dong Bao
Abstract
Open-access reader
We use a procedure to extract valuable information regarding the p-wave halos in 8 B and 11 Be from the measured nuclear asymptotic normalization coefficients. With this procedure, we evaluate the probabilities of valence particle being outside the binding potential, which are 0.31±0.03 for the 8 B ground state and 0.59±0.06 for the 11 Be first excited state. More than 50% probability outside the binding potential means that the 11 Be first excited state has a typical p-wave neutron halo. The rms radii are obtained to be 3.9±0.2 fm for the valence proton in the 8 B ground state and to be 6.5±0.3 fm for the valence neutron in the 11 Be first excited state. The probabilities of the valence particle being in the non-classical region are extracted to be 0.41±0.04 and 0.46±0.05 for the 8 B ground state and the 11 Be first excited state, respectively. The results demonstrate that although hindered by the effects of Coulomb and/or centrifugal barriers, their valence particle wavefunction still penetrates substantially into the classically forbidden region.
OpenAlex reports 10 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
We use a procedure to extract valuable information regarding the p-wave halos in 8 B and 11 Be from the measured nuclear asymptotic normalization coefficients. With this procedure, we evaluate the probabilities of valence particle being outside the binding potential, which are 0.31±0.03 for the 8 B ground state and 0.59±0.06 for the 11 Be first excited state. More than 50% probability outside the binding potential means that the 11 Be first excited state has a typical p-wave neutron halo. The rms radii are obtained to be 3.9±0.2 fm for the valence proton in the 8 B ground state and to be 6.5±0.3 fm for the valence neutron in the 11 Be first excited state. The probabilities of the valence particle being in the non-classical region are extracted to be 0.41±0.04 and 0.46±0.05 for the 8 B ground state and the 11 Be first excited state, respectively. The results demonstrate that although hindered by the effects of Coulomb and/or centrifugal barriers, their valence particle wavefunction still penetrates substantially into the classically forbidden region.
Key concepts: Excited state, Valence (chemistry), Wave function, Atomic physics, Halo, Physics, Neutron, Ground state