arXiv · 0901.1048
$β$-Decay Half-Life of the $rp$-Process Waiting Point Nuclide $^{84}$Mo
Abstract
A half-life of 2.2 $\pm$ 0.2 s has been deduced for the ground-state $β$ decay of $^{84}$Mo, more than 1$σ$ shorter than the previously adopted value. $^{84}$Mo is an even-even N = Z nucleus lying on the proton dripline, created during explosive hydrogen burning in Type I X-ray bursts in the rapid proton capture ($rp$) process. The effect of the measured half-life on $rp$-process reaction flow is explored. Implications on theoretical treatments of nuclear deformation in $^{84}$Mo are also discussed.
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J. B. Stoker, P. F. Mantica, D. Bazin, A. Becerril, J. S. Berryman, H. L. Crawford, A. Estrade, C. J. Guess, G. W. Hitt, G. Lorusso, M. Matos, K. Minamisono, F. Montes, J. Pereira, G. Perdikakis, H. Schatz, K. Smith, R. G. T. Zegers. 2009-01-08. $β$-Decay Half-Life of the $rp$-Process Waiting Point Nuclide $^{84}$Mo. https://doi.org/10.1103/physrevc.79.015803
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