1. Proton-proton correlations in distinguishing the two-proton emission mechanism of $^{23}$Al and $^{22}$Mg
- Author
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Fang, D. Q., Ma, Y. G., Sun, X. Y., Zhou, P., Togano, Y., Aoi, N., Baba, H., Cai, X. Z., Cao, X. G., Chen, J. G., Fu, Y., Guo, W., Hara, Y., Honda, T., Hu, Z. G., Ieki, K., Ishibashi, Y., Ito, Y., Iwasa, N., Kanno, S., Kawabata, T., Kimura, H., Kondo, Y., Kurita, K., Kurokawa, M., Moriguchi, T., Murakami, H., Ooishi, H., Okada, K., Ota, S., Ozawa, A., Sakurai, H., Shimoura, S., Shioda, R., Takeshita, E., Takeuchi, S., Tian, W. D., Wang, H. W., Wang, J. S., Wang, M., Yamada, K., Yamada, Y., Yasuda, Y., Yoneda, K., Zhang, G. Q., and Motobayashi, T.
- Subjects
Nuclear Experiment ,Nuclear Theory - Abstract
The proton-proton momentum correlation functions ($C_{pp}(q)$) for kinematically complete decay channels of $^{23}$Al $\rightarrow$ p + p + $^{21}$Na and $^{22}$Mg $\rightarrow$ p + p + $^{20}$Ne have been measured at the RIKEN RI Beam Factory. From the very different correlation strength of $C_{pp}(q)$ for $^{23}$Al and $^{22}$Mg, the source size and emission time information were extracted from the $C_{pp}(q)$ data by assuming a Gaussian source profile in the correlation function calculation code (CRAB). The results indicated that the mechanism of two-proton emission from $^{23}$Al was mainly sequential emission, while that of $^{22}$Mg was mainly three-body simultaneous emission. By combining our earlier results of the two-proton relative momentum and the opening angle, it is pointed out that the mechanism of two-proton emission could be distinguished clearly., Comment: 6 pages, 4 figures; accepted by Phys. Rev. C
- Published
- 2016
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