The scattering of a weakly bound three-body system by a target is discussed. A transformed harmonic oscillator basis is used to provide an appropriate discrete and finite basis for treating the continuum part of the spectrum of the projectile. The continuum-discretized coupled-channels framework is used for the scattering calculations. The formalism is applied to different reactions, 6 He+
The elastic scattering of 6He on 208Pb has been measured at laboratory energies of
14, 16, 18 and 22 MeV. These data were analyzed using phenomenological Woods-
Saxon form factors and optical model calculations. A semiclassical polarization po-
tential was used to study the e ect of the Coulomb dipole polarizability. Evidence
for long range absorption, partially arising from Coulomb dipole polarizability, is
reported. The energy variation of the optical potential was found to be consistent
with the dispersion relations which connect the real and imaginary parts of the
potential
The structure of the three-body Borromean nucleus 6 He is approximated by a two-body di-neutron cluster model. The binding energy of the 2n-α system is determined to obtain a correct description of the 2n-α coordinate, as given by a realistic three-body model calculation. The model is applied to describe the breakup effects in elastic scattering of 6 He on several targets, for which experimental data exist. We show that an adequate description of the di-neutron-core degree of freedom permits a fairly accurate description of the elastic scattering of 6 He on different targets.A. M. MORO et al. PHYSICAL REVIEW C 75, 064607 (2007)
The scattering of a weakly bound three-body system by a target is discussed. A transformed harmonic oscillator basis is used to provide an appropriate discrete and finite basis for treating the continuum part of the spectrum of the projectile. The continuum-discretized coupled-channels framework is used for the scattering calculations.
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