DPP decomposition in CDCC shows Coulomb bridge dominates peripheral polarization for halo systems like 11Be and 8B, with high-L breakup as signature.
Thompson, Coupled reaction channels calculations i n nuclear physics, Comp
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Analysis of transfer to continuum states in 16C(d,p)17C requires a large N=16 shell gap (>5 MeV) in 17C.
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Coulomb bridge mechanism for peripheral polarization of weakly bound projectiles
DPP decomposition in CDCC shows Coulomb bridge dominates peripheral polarization for halo systems like 11Be and 8B, with high-L breakup as signature.
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Constraining the $N=16$ Shell Gap in $^{17}$C via Transfer to the Continuum in the $^{16}$C$(d,p)^{17}$C Reaction
Analysis of transfer to continuum states in 16C(d,p)17C requires a large N=16 shell gap (>5 MeV) in 17C.