Absence of structure in the $^{20,22}$Ne + $^{118}$Sn quasi-elastic barrier distribution

Motivated by the extreme deformation parameters of the projectile, we have measured quasi-elastic scattering for 20Ne + 118Sn. In contrast to calculations based on known collective states, the experimental barrier distribution is structureless. A comparison with the system 22Ne + 118Sn shows that th...

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Veröffentlicht in:Physics letters. B 2005-05, Vol.615, p.55-60
Hauptverfasser: Piasecki, E., Swiderski, L., Czosnyka, P., Kowalczyk, M., Piasecki, K., Witecki, M., Czosnyka, T., Jastrzebski, J., Kordyasz, A., Kisielinski, M., Krogulski, T., Mutterer, M., Khlebnikov, S., Trzaska, W.H., Hagino, K., Rowley, N.
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container_end_page 60
container_issue
container_start_page 55
container_title Physics letters. B
container_volume 615
creator Piasecki, E.
Swiderski, L.
Czosnyka, P.
Kowalczyk, M.
Piasecki, K.
Witecki, M.
Czosnyka, T.
Jastrzebski, J.
Kordyasz, A.
Kisielinski, M.
Krogulski, T.
Mutterer, M.
Khlebnikov, S.
Trzaska, W.H.
Hagino, K.
Rowley, N.
description Motivated by the extreme deformation parameters of the projectile, we have measured quasi-elastic scattering for 20Ne + 118Sn. In contrast to calculations based on known collective states, the experimental barrier distribution is structureless. A comparison with the system 22Ne + 118Sn shows that this smoothing is unlikely to be due to nucleon- or α-transfer channels, and is more likely to be due to coupling to many other weak channels
doi_str_mv 10.1016/j.physletb.2005.03.070
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Physics
title Absence of structure in the $^{20,22}$Ne + $^{118}$Sn quasi-elastic barrier distribution
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