CERN Accelerating science

Article
Report number arXiv:2206.14563
Title Resonance Excitations in $^7$Be(d,p)$^8$Be$^\ast$ to Address the Cosmological Lithium Problem
Related titleResonance Excitations in Be7(d,p)Be*8 to Address the Cosmological Lithium Problem
Author(s) Ali, Sk M. (Bose Inst., Kolkata) ; Gupta, D. (Bose Inst., Kolkata) ; Kundalia, K. (Bose Inst., Kolkata) ; Saha, Swapan K. (Bose Inst., Kolkata) ; Tengblad, O. (Madrid, Inst. Estructura Materia) ; Ovejas, J.D. (Madrid, Inst. Estructura Materia) ; Perea, A. (Madrid, Inst. Estructura Materia) ; Martel, I. (Huelva U.) ; Cederkall, J. (Lund U.) ; Park, J. (Lund U.) ; Szwec, S. (Jyvaskyla U. ; Helsinki U.)
Publication 2022-06-21
Imprint 2022-06-29
Number of pages 6
Note 5 pages, 5 figures
In: Phys. Rev. Lett. 128 (2022) 252701
DOI 10.1103/PhysRevLett.128.252701 (publication)
Subject category nucl-ex ; Nuclear Physics - Experiment ; Astrophysics and Astronomy
Accelerator/Facility, Experiment CERN ISOLDE
Abstract The anomaly in lithium abundance is a well-known unresolved problem in nuclear astrophysics. A recent revisit to the problem tried the avenue of resonance enhancement to account for the primordial $^7$Li abundance in standard big-bang nucleosynthesis (BBN). Prior measurements of the $^7$Be(d,p)$^8$Be* reaction could not account for the individual contributions of the different excited states involved, particularly at higher energies close to the Q-value of the reaction. We carried out an experiment at HIE-ISOLDE, CERN to study this reaction at E$_{cm}$ = 7.8 MeV, populating excitations up to 22 MeV in $^8$Be for the first time. The angular distributions of the several excited states have been measured and the contributions of the higher excited states in the total cross section at the relevant big-bang energies were obtained by extrapolation to the Gamow window using the TALYS code. The results show that by including the contribution of the 16.63 MeV state, the maximum value of the total S-factor inside the Gamow window comes out to be 167 MeV b as compared to earlier estimate of 100 MeV b. However, this still does not account for the lithium discrepancy.
Copyright/License preprint: (License: CC BY 4.0)
publication: © 2022-2025 American Physical Society



Corresponding record in: Inspire


 Record created 2022-07-14, last modified 2024-05-08


Fulltext:
Download fulltext
PDF