arXiv · 2303.08701
New detection systems for an enhanced sensitivity in key stellar (n,$\gamma$) measurements
Abstract
Neutron capture cross-section measurements are fundamental in the study of astrophysical phenomena, such as the slow neutron capture (s-) process of nucleosynthesis operating in red-giant and massive stars. However, neutron capture measurements via the time-of-flight (TOF) technique on key $s$-process nuclei are often challenging. Difficulties arise from the limited mass ($\sim$mg) available and the high sample-related background in the case of the unstable $s$-process branching points. Measurements on neutron magic nuclei, that act as $s$-process bottlenecks, are affected by low (n,$\gamma$) cross sections and a dominant neutron scattering background. Overcoming these experimental challenges requires the combination of facilities with high instantaneous flux, such as n\_TOF-EAR2, with detection systems with an enhanced detection sensitivity and high counting rate capabilities. This contribution reviews some of the latest detector developments in detection systems for (n,$\gamma$) measurements at n\_TOF, such as i-TED, an innovative detection system which exploits the Compton imaging technique to reduce the dominant neutron scattering background and s-TED, a highly segmented total energy detector intended for high flux facilities. The discussion will be illustrated with results of the first measurement of key the $s$-process branching-point reaction $^{79}$Se(n,$\gamma$).
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J. Lerendegui-Marco, V. Babiano-Suárez, J. Balibrea-Correa, C. Domingo-Pardo, I. Ladarescu, A. Tarifeño-Saldivia, V. Alcayne, D. Cano-Ott, E. González-Romero, T. Martínez, E. Mendoza, C. Guerrero, F. Calviño, A. Casanovas, U. Köster, N. M. Chiera, R. Dressler, E. A. Maugeri, D. Schumann, the n_TOF Collaboration. 2023-03-15. New detection systems for an enhanced sensitivity in key stellar (n,$\gamma$) measurements. https://doi.org/10.1051/epjconf/202327913001
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