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arXiv · 2009.12801

Multi-neutron transfer in $^{8}$He induced reactions near the Coulomb barrier

Abstract

The measured inclusive $^6$He and $^4$He production cross sections of G. Marqu{í}nez-Dur{á}n {\em et al.}, Phys.\ Rev.\ C {\bf 98}, 034615 (2018) are reexamined and the conclusions concerning the relative importance of 1n and 2n transfer to the production of $^6$He arising from the interaction of a 22 MeV $^8$He beam with a $^{208}$Pb target revised. A consideration of the kinematics of the 2n-stripping reaction when compared with the measured $^6$He total energy versus angle spectrum places strict limits on the allowed excitation energy of the $^{210}$Pb residual, so constraining distorted wave Born approximation calculations that the contribution of the 2n stripping process to the inclusive $^6$He production can only be relatively small. It is therefore concluded that the dominant $^6$He production mechanism must be 1n stripping followed by decay of the $^7$He ejectile. Based on this result we present strong arguments in favor of direct, one step four-neutron (4n) stripping as the main mechanism for $^4$He production.

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I. Martel, N. Keeley, K. W. Kemper, K. Rusek. 2020-09-27. Multi-neutron transfer in $^{8}$He induced reactions near the Coulomb barrier. https://doi.org/10.1103/physrevc.102.034609

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