4.7 Article

Measuring the β-decay Properties of Neutron-rich Exotic Pm, Sm, Eu, and Gd Isotopes to Constrain the Nucleosynthesis Yields in the Rare-earth Region

期刊

ASTROPHYSICAL JOURNAL
卷 936, 期 2, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.3847/1538-4357/ac80fc

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资金

  1. National Research, Development, and Innovation Fund of Hungary [NN128072, K128729]
  2. Canadian Natural Sciences and Engineering Research Council (NSERC) [SAPPJ-2017-00026, SAPIN-2019-00030]
  3. National Science Foundation (NSF) [PHY-1714153]
  4. JSPS KAKENHI [17H06090, 20H05648]
  5. RIKEN program for Evolution of Matter in the Universe (r-EMU)
  6. UK Science and Technology Facilities Council (STFC)
  7. Office of Nuclear Physics, U.S. Department of Energy (DOE) [DE-FG02-96ER40983, DE-AC05-00OR22725]
  8. National Nuclear Security Administration (NNSA) under the Stewardship Science Academic Alliances program through DOE [DE-NA0002132]
  9. US National Science Foundation [PHY-1714153]
  10. Spanish MICINN [FPA2014-52823-C2-1-P, FPA2017-83946-C2-1-P]
  11. Ministerio de Ciencia e Innovacion [PID2019-104714GB-C21]
  12. Centro de Excelencia Severo Ochoa del IFIC [SEV-2014-0398]
  13. Generalitat Valenciana [PROMETEO/2019/007]
  14. JSPS Invitational Fellowships for Research in Japan [L1955]
  15. Polish National Science Centre [2019/33/N/ST2/03023, 2020/36/T/ST2/00547]
  16. ANID/FONDECYT Regular [1171467, 1221364]
  17. [2020/39/B/ST2/02346]

向作者/读者索取更多资源

In this study, the beta-delayed neutron-emission probabilities of 28 exotic neutron-rich isotopes were measured for the first time using advanced detectors. The results significantly expanded the existing database and improved the accuracy of previously measured values. The new data not only contribute to the understanding of theoretical predictions, but also provide insights into the formation mechanisms of rare-earth peaks and reduce abundance uncertainty.
The beta-delayed neutron-emission probabilities of 28 exotic neutron-rich isotopes of Pm, Sm, Eu, and Gd were measured for the first time at RIKEN Nishina Center using the Advanced Implantation Detector Array (AIDA) and the BRIKEN neutron detector array. The existing beta-decay half-life (T (1/2)) database was significantly increased toward more neutron-rich isotopes, and uncertainties for previously measured values were decreased. The new data not only constrain the theoretical predictions of half-lives and beta-delayed neutron-emission probabilities, but also allow for probing the mechanisms of formation of the high-mass wing of the rare-earth peak located at A approximate to 160 in the r-process abundance distribution through astrophysical reaction network calculations. An uncertainty quantification of the calculated abundance patterns with the new data shows a reduction of the uncertainty in the rare-earth peak region. The newly introduced variance-based sensitivity analysis method offers valuable insight into the influence of important nuclear physics inputs on the calculated abundance patterns. The analysis has identified the half-lives of Sm-168 and of several gadolinium isotopes as some of the key variables among the current experimental data to understand the remaining abundance uncertainty at A = 167-172.

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