Role of nuclear and electromagnetic fragmentation in the charge-changing reactions of 18O on carbon and lead targets at around 370 MeV/nucleon

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Hauptverfasser: Liu, J. R., Sun, B. -H., Zhao, J. W., Guo, G., Li, G. S., Li, Z. Z., Niu, Y. F., Tanihata, I., Terashima, S., Wang, F., Wang, M., Wei, X. L., Xu, J. Y., Zhang, J. C., Zhu, L. H., He, L. C., Liu, C. Y., Lu, C. G., Lin, W. J., Lin, W. P., Liu, Z., Ren, P. P., Sun, Y. Z., Sun, Z. Y., Wang, J., Wang, S. T., Xu, X. D., Zhang, M. X., Zhang, X. H., Zhang, Y.
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Veröffentlicht: 2025
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author Liu, J. R.
Sun, B. -H.
Zhao, J. W.
Guo, G.
Li, G. S.
Li, Z. Z.
Niu, Y. F.
Tanihata, I.
Terashima, S.
Wang, F.
Wang, M.
Wei, X. L.
Xu, J. Y.
Zhang, J. C.
Zhu, L. H.
He, L. C.
Liu, C. Y.
Lu, C. G.
Lin, W. J.
Lin, W. P.
Liu, Z.
Ren, P. P.
Sun, Y. Z.
Sun, Z. Y.
Wang, J.
Wang, S. T.
Xu, X. D.
Zhang, M. X.
Zhang, X. H.
Zhang, Y.
author_facet Liu, J. R.
Sun, B. -H.
Zhao, J. W.
Guo, G.
Li, G. S.
Li, Z. Z.
Niu, Y. F.
Tanihata, I.
Terashima, S.
Wang, F.
Wang, M.
Wei, X. L.
Xu, J. Y.
Zhang, J. C.
Zhu, L. H.
He, L. C.
Liu, C. Y.
Lu, C. G.
Lin, W. J.
Lin, W. P.
Liu, Z.
Ren, P. P.
Sun, Y. Z.
Sun, Z. Y.
Wang, J.
Wang, S. T.
Xu, X. D.
Zhang, M. X.
Zhang, X. H.
Zhang, Y.
contents Charge-changing cross sections (CCCSs) of 18O on carbon (C) and lead (Pb) targets have been measured with an uncertainty of less than 4% at around 370MeV/nucleon. We evaluate the contributions of nucleon-nucleon (NN) and electromagnetic (EM) interactions to CCCSs by considering the direct proton removal process, the charged particle evaporation (CPE) after neutron removal, and the EM excitation. We conclude that the CPE accounts for 12.3% and 5% of CCCSs on C and Pb, respectively. Only less than 1% of CCCSs of 18O is attributed to the EM excitation. Further investigation of projectiles from 18O to 197Au on C, silver (Ag) and Pb targets at 300 and 900MeV/nucleon show that the contribution of EM to CCCSs on Ag and Pb increases with projectile mass numbers and incident energies, and can reach 10% for 197Au on Pb at 900MeV/nucleon. In contrast, the EM contribution to CCCS is negligible for all projectiles on C at both energies.
format Preprint
id arxiv_https___arxiv_org_abs_2506_16367
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Role of nuclear and electromagnetic fragmentation in the charge-changing reactions of 18O on carbon and lead targets at around 370 MeV/nucleon
Liu, J. R.
Sun, B. -H.
Zhao, J. W.
Guo, G.
Li, G. S.
Li, Z. Z.
Niu, Y. F.
Tanihata, I.
Terashima, S.
Wang, F.
Wang, M.
Wei, X. L.
Xu, J. Y.
Zhang, J. C.
Zhu, L. H.
He, L. C.
Liu, C. Y.
Lu, C. G.
Lin, W. J.
Lin, W. P.
Liu, Z.
Ren, P. P.
Sun, Y. Z.
Sun, Z. Y.
Wang, J.
Wang, S. T.
Xu, X. D.
Zhang, M. X.
Zhang, X. H.
Zhang, Y.
Nuclear Experiment
Nuclear Theory
Charge-changing cross sections (CCCSs) of 18O on carbon (C) and lead (Pb) targets have been measured with an uncertainty of less than 4% at around 370MeV/nucleon. We evaluate the contributions of nucleon-nucleon (NN) and electromagnetic (EM) interactions to CCCSs by considering the direct proton removal process, the charged particle evaporation (CPE) after neutron removal, and the EM excitation. We conclude that the CPE accounts for 12.3% and 5% of CCCSs on C and Pb, respectively. Only less than 1% of CCCSs of 18O is attributed to the EM excitation. Further investigation of projectiles from 18O to 197Au on C, silver (Ag) and Pb targets at 300 and 900MeV/nucleon show that the contribution of EM to CCCSs on Ag and Pb increases with projectile mass numbers and incident energies, and can reach 10% for 197Au on Pb at 900MeV/nucleon. In contrast, the EM contribution to CCCS is negligible for all projectiles on C at both energies.
title Role of nuclear and electromagnetic fragmentation in the charge-changing reactions of 18O on carbon and lead targets at around 370 MeV/nucleon
topic Nuclear Experiment
Nuclear Theory
url https://arxiv.org/abs/2506.16367