5 research outputs found

    Four-body continuum-discretized coupled-channels calculations: Application to 6He+64Zn at 13.6 MeV

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    The recently developed four-body continuum-discretized coupled-channels (CDCC) method, making use of the binning procedure [1], is applied to the reaction 6He+64Zn at 13.6 MeV (around the Coulomb barrier). Excellent agreement with available elastic data [2] is found.Dirección General de Investigación Científica y Técnica FIS 2008-04189, FPA 2006- 13807-C02-01U.S. Department of Energy DE-AC52-07NA27344U.K. STFC EP/D00362

    Four‐body continuum‐discretized coupled‐channels calculations: Application to 6He+64Zn at 13.6 MeV

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    Trabajo presentado al "International scientific meeting on nuclear physics: basic concepts in nuclear physics: theory, experiments and applications" celebrado del 4 al 10 de julio del 2009 en La Rábida (España).-- El pdf del artículo es la versión post-print.The recently developed four-body continuum-discretized coupled-channels (CDCC) method, making use of the binning procedure [I], is applied to the reaction He-6+Zn-64 at 13.6 MeV (around the Coulomb barrier). Excellent agreement with available elastic data [2] is found.This work was supported by the DGICYT under Projects FIS 2008-04189, FPA 2006-13807-C02-01, and consolider CPAN, by the U.S. Department of Energy by LLNL under Contract DE-AC52-07NA27344, and by the U.K. STFC under Grant EP/D003628.Peer Reviewe

    Four-body continuum-discretized coupled-channels calculations: Application to 6He+64Zn at 13.6 MeV

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    The recently developed four-body continuum-discretized coupled-channels (CDCC) method, making use of the binning procedure [1], is applied to the reaction 6He+64Zn at 13.6 MeV (around the Coulomb barrier). Excellent agreement with available elastic data [2] is found

    Four-body continuum-discretized coupled-channels calculations: Application to 6He+64Zn at 13.6 MeV

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    The recently developed four-body continuum-discretized coupled-channels (CDCC) method, making use of the binning procedure [1], is applied to the reaction 6He+64Zn at 13.6 MeV (around the Coulomb barrier). Excellent agreement with available elastic data [2] is found
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