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Constraint of the astrophysical ^{26g}Al(p,γ)^{27}Si destruction rate at stellar temperatures.

Authors :
Pain SD
Bardayan DW
Blackmon JC
Brown SM
Chae KY
Chipps KA
Cizewski JA
Jones KL
Kozub RL
Liang JF
Matei C
Matos M
Moazen BH
Nesaraja CD
Okołowicz J
O'Malley PD
Peters WA
Pittman ST
Płoszajczak M
Schmitt KT
Shriner JF
Shapira D
Smith MS
Stracener DW
Wilson GL
Source :
Physical review letters [Phys Rev Lett] 2015 May 29; Vol. 114 (21), pp. 212501. Date of Electronic Publication: 2015 May 28.
Publication Year :
2015

Abstract

The Galactic 1.809-MeV γ-ray signature from the β decay of ^{26g}Al is a dominant target of γ-ray astronomy, of which a significant component is understood to originate from massive stars. The ^{26g}Al(p,γ)^{27}Si reaction is a major destruction pathway for ^{26g}Al at stellar temperatures, but the reaction rate is poorly constrained due to uncertainties in the strengths of low-lying resonances in ^{27}Si. The ^{26g}Al(d,p)^{27}Al reaction has been employed in inverse kinematics to determine the spectroscopic factors, and hence resonance strengths, of proton resonances in ^{27}Si via mirror symmetry. The strength of the 127-keV resonance is found to be a factor of 4 higher than the previously adopted upper limit, and the upper limit for the 68-keV resonance has been reduced by an order of magnitude, considerably constraining the ^{26g}Al destruction rate at stellar temperatures.

Details

Language :
English
ISSN :
1079-7114
Volume :
114
Issue :
21
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
26066430
Full Text :
https://doi.org/10.1103/PhysRevLett.114.212501