Quark-Model Baryon-Baryon Interaction Applied to Neutron-Deuteron Scattering. II : Polarization Observables of the Elastic Scattering

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Abstract

The neutron-deuteron (nd) scattering is solved in the Faddeev formalism, employing the energy-independent version of the quark-model baryon-baryon interaction fss2. The differential cross sections and the spin polarization of the elastic scattering up to the neutron incident energy E_n=65MeV are well reproduced without reinforcing fss2 with the three-body force. The vector analyzing power of the neutron, A_y (θ), in the energy region E_n≤25MeV is largely improved in comparison with the predictions based on the meson-exchange potentials, thus yielding a partial solution of the long-standing A_y puzzle owing to the nonlocality of the short-range repulsion produced by the quark-model baryon-baryon interaction. The large Coulomb effect in the vector and tensor analyzing powers in E_n≤10MeV is also analyzed by the Vincent and Phatak method and on the basis of recent detailed studies by other authors.

Journal

  • Progress of theoretical physics

    Progress of theoretical physics 125(4), 729-773, 2011-04-25

    Publication Office, Progress of Theoretical Physics

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Codes

  • NII Article ID (NAID)
    110008607483
  • NII NACSIS-CAT ID (NCID)
    AA00791455
  • Text Lang
    ENG
  • Article Type
    Journal Article
  • ISSN
    0033068X
  • NDL Article ID
    11052507
  • NDL Source Classification
    ZM35(科学技術--物理学)
  • NDL Call No.
    Z53-A468
  • Data Source
    CJP  CJPref  NDL  NII-ELS 
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