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arXiv · 2212.01820

Measurement of the $^{159}$Tb(n, $\gamma$) cross section at the CSNS Back-n facility

Abstract

The stellar (n, $\gamma$) cross section data for the mass numbers around A $\approx$ 160 are of key importance to nucleosynthesis in the main component of the slow neutron capture process, which occur in the thermally pulsing asymptotic giant branch (TP--AGB). The new measurement of (n, $\gamma$) cross sections for $^{159}$Tb was performed using the C$_6$D$_6$ detector system at the back streaming white neutron beam line (Back-n) of the China spallation neutron source (CSNS) with neutron energies ranging from 1 eV to 1 MeV. Experimental resonance capture kernels were reported up to 1.2 keV neutron energy with this capture measurement. Maxwellian-averaged cross sections (MACS) were derived from the measured $^{159}$Tb (n, $\gamma$) cross sections at $kT$ = 5 $\sim$ 100 keV and are in good agreement with the recommended data of KADoNiS-v0.3 and JEFF-3.3, while KADoNiS-v1.0 and ENDF-VIII.0 significantly overestimate the present MACS up to 40$\%$ and 20$\%$, respectively. A sensitive test of the s-process nucleosynthesis was also performed with the stellar evolution code MESA. Significant changes in abundances around A $\approx$ 160 were observed between the ENDF/B-VIII.0 and present measured rate of $^{159}$Tb(n, $\gamma$)$^{160}$Tb in the MESA simulation.

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S. Zhang, G. Li, W. Jiang, D. X. Wang, J. Ren, E. T. Li, M. Huang, J. Y. Tang, X. C. Ruan, H. W. Wang, Z. H. Li, Y. S. Chen, L. X. Liu, X. X. Li, Q. W. Fan, R. R. Fan, X. R. Hu, J. C. Wang, X. Li, 1D. D. Niu, N. Song, M. Gu. 2022-12-04. Measurement of the $^{159}$Tb(n, $\gamma$) cross section at the CSNS Back-n facility. https://doi.org/10.1103/physrevc.107.045809

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