One- and two-neutron removal reactions from the most neutron-rich carbon isotopes
N. Kobayashi, T. Nakamura, J. A. Tostevin, Y. Kondo, N. Aoi, H. Baba,, S. Deguchi, J. Gibelin, M. Ishihara, Y. Kawada, T. Kubo, T. Motobayashi, T., Ohnishi, N. A. Orr, H. Otsu, H. Sakurai, Y. Satou, E. C. Simpson, T., Sumikama, H. Takeda, M. Takechi, S. Takeuchi, K. N. Tanaka

TL;DR
This study investigates the structure of neutron-rich carbon isotopes using high-energy neutron removal reactions, revealing their shell-model configurations and supporting the halo nucleus nature of $^{22}$C.
Contribution
It provides detailed experimental data and theoretical analysis on neutron removal reactions, confirming the shell-model configurations and halo structure of $^{22}$C.
Findings
Narrow momentum distributions for one-neutron removal from $^{19}$C and $^{20}$C.
Broad momentum distribution for two-neutron removal from $^{20}$C.
Strong evidence supporting $^{22}$C as a two-neutron halo nucleus.
Abstract
The structure of C has been investigated using high-energy (about 240 MeV/nucleon) one- and two-neutron removal reactions on a carbon target. Measurements were made of the inclusive cross sections and momentum distributions for the charged residues. Narrow momentum distributions were observed for one-neutron removal from C and C and two-neutron removal from C. Two-neutron removal from C resulted in a relatively broad momentum distribution. The results are compared with eikonal-model calculations combined with shell-model structure information. The neutron-removal cross sections and associated momentum distributions are calculated for transitions to both the particle-bound and particle-unbound final states. The calculations take into account the population of the mass reaction residues, C, and, following one-neutron emission after…
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