Penning trap mass measurements on (99-109)$Cd with ISOLTRAP and implications on the rp process
arXiv:0908.2581 · doi:10.1103/PhysRevC.80.035805
Abstract
Penning trap mass measurements on neutron-deficient Cd isotopes (99-109)Cd have been performed with the ISOLTRAP mass spectrometer at ISOLDE/CERN, all with relative mass uncertainties below 3*10^8. A new mass evaluation has been performed. The mass of 99Cd has been determined for the first time which extends the region of accurately known mass values towards the doubly magic nucleus 100Sn. The implication of the results on the reaction path of the rp process in stellar X-ray bursts is discussed. In particular, the uncertainty of the abundance and the overproduction created by the rp-process for the mass A = 99 is demonstrated by reducing the uncertainty of the proton-separation energy of 100In Sp(100In) by a factor of 2.5.
14 pages, 9 figures
References in corpus (7)
- Sensitivity of p-Process Nucleosynthesis to Nuclear Reaction Rates in a 25 Solar Mass Supernova Model
- High-precision mass measurements of nickel, copper, and gallium isotopes and the purported shell closure at N=40
- Mass measurements in the vicinity of the rp-process and the nu p-process paths with JYFLTRAP and SHIPTRAP
- Mass measurements beyond the major r-process waiting point 80Zn
- Evidence for a breakdown of the Isobaric Multiplet Mass Equation: A study of the A=35, T=3/2 isospin quartet
- Mass Measurements and Implications for the Energy of the High-Spin Isomer in 94Ag
- On the origin of the lightest Molybdenum isotopes