Neutron asymptotic normalization coefficients and halo radii of the first excited states of 13C and 11Be

We have performed coupled reaction channels calculations of the (d,p) reactions on 12C and 10Be at laboratory energies of 12, 25, and 30 MeV leading to the ground and first excited states of 13C and 11Be. We found spectroscopic factors Sexp, asymptotic normalization coefficients (ANCs) and root mea...

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Main Authors: Belyaeva T. L., Perez-Torres R., Demyanova A. S., Goncharov S. A., Ogloblin A. A.
Format: Article
Language:English
Published: EDP Sciences 2014-03-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/20146603009
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spelling doaj-f9eedc6b951c44ea8966179aafcf4cc22021-08-02T16:11:59ZengEDP SciencesEPJ Web of Conferences2100-014X2014-03-01660300910.1051/epjconf/20146603009epjconf_inpc2013_03009Neutron asymptotic normalization coefficients and halo radii of the first excited states of 13C and 11BeBelyaeva T. L.0Perez-Torres R.1Demyanova A. S.2Goncharov S. A.3Ogloblin A. A.4Universidad Autónoma del Estado de MéxicoInstituto Tecnológico de Toluca, Metepec, Estado de MéxicoRRC Kurchatov InstituteLomonosov Moscow State UniversityRRC Kurchatov Institute We have performed coupled reaction channels calculations of the (d,p) reactions on 12C and 10Be at laboratory energies of 12, 25, and 30 MeV leading to the ground and first excited states of 13C and 11Be. We found spectroscopic factors Sexp, asymptotic normalization coefficients (ANCs) and root mean square radii of the last neutron in these states. Our calculations confirm the existence of neutron halos in the first excited state of 13C, as well as in the ground and the first excited states of 11Be. We found that the neutron transfer dominates at energies about 12 and 25 MeV and demonstrated that the states with enlarged radii are formed in the reactions of a peripheral type, which satisfy the criterion of a peripherality: C2=Sexpb2=const, where C is the ANC and b is the single-particle ANC. http://dx.doi.org/10.1051/epjconf/20146603009
collection DOAJ
language English
format Article
sources DOAJ
author Belyaeva T. L.
Perez-Torres R.
Demyanova A. S.
Goncharov S. A.
Ogloblin A. A.
spellingShingle Belyaeva T. L.
Perez-Torres R.
Demyanova A. S.
Goncharov S. A.
Ogloblin A. A.
Neutron asymptotic normalization coefficients and halo radii of the first excited states of 13C and 11Be
EPJ Web of Conferences
author_facet Belyaeva T. L.
Perez-Torres R.
Demyanova A. S.
Goncharov S. A.
Ogloblin A. A.
author_sort Belyaeva T. L.
title Neutron asymptotic normalization coefficients and halo radii of the first excited states of 13C and 11Be
title_short Neutron asymptotic normalization coefficients and halo radii of the first excited states of 13C and 11Be
title_full Neutron asymptotic normalization coefficients and halo radii of the first excited states of 13C and 11Be
title_fullStr Neutron asymptotic normalization coefficients and halo radii of the first excited states of 13C and 11Be
title_full_unstemmed Neutron asymptotic normalization coefficients and halo radii of the first excited states of 13C and 11Be
title_sort neutron asymptotic normalization coefficients and halo radii of the first excited states of 13c and 11be
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2014-03-01
description We have performed coupled reaction channels calculations of the (d,p) reactions on 12C and 10Be at laboratory energies of 12, 25, and 30 MeV leading to the ground and first excited states of 13C and 11Be. We found spectroscopic factors Sexp, asymptotic normalization coefficients (ANCs) and root mean square radii of the last neutron in these states. Our calculations confirm the existence of neutron halos in the first excited state of 13C, as well as in the ground and the first excited states of 11Be. We found that the neutron transfer dominates at energies about 12 and 25 MeV and demonstrated that the states with enlarged radii are formed in the reactions of a peripheral type, which satisfy the criterion of a peripherality: C2=Sexpb2=const, where C is the ANC and b is the single-particle ANC.
url http://dx.doi.org/10.1051/epjconf/20146603009
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