Experimental study of the astrophysical gamma-process reaction 124Xe(alpha,gamma)128Ba
arXiv:1609.05612 · doi:10.1103/PhysRevC.94.045801
Abstract
The synthesis of heavy, proton rich isotopes in the astrophysical gamma-process proceeds through photodisintegration reactions. For the improved understanding of the process, the rates of the involved nuclear reactions must be known. The reaction 128Ba(g,a)124Xe was found to affect the abundance of the p nucleus 124Xe. Since the stellar rate for this reaction cannot be determined by a measurement directly, the aim of the present work was to measure the cross section of the inverse 124Xe(a,g)128Ba reaction and to compare the results with statistical model predictions. Of great importance is the fact that data below the (a,n) threshold was obtained. Studying simultaneously the 124Xe(a,n)127Ba reaction channel at higher energy allowed to further identify the source of a discrepancy between data and prediction. The 124Xe + alpha cross sections were measured with the activation method using a thin window 124Xe gas cell. The studied energy range was between E = 11 and 15 MeV close above the astrophysically relevant energy range. The obtained cross sections are compared with statistical model calculations. The experimental cross sections are smaller than standard predictions previously used in astrophysical calculations. As dominating source of the difference, the theoretical alpha width was identified. The experimental data suggest an alpha width lower by at least a factor of 0.125 in the astrophysical energy range. An upper limit for the 128Ba(g,a)124Xe stellar rate was inferred from our measurement. The impact of this rate was studied in two different models for core-collapse supernova explosions of 25 solar mass stars. A significant contribution to the 124Xe abundance via this reaction path would only be possible when the rate was increased above the previous standard value. Since the experimental data rule this out, they also demonstrate the closure of this production path.
Accepted for publication in Phys. Rev. C
References in corpus (16)
- The r-process of stellar nucleosynthesis: Astrophysics and nuclear physics achievements and mysteries
- Sensitivity of p-Process Nucleosynthesis to Nuclear Reaction Rates in a 25 Solar Mass Supernova Model
- Activation measurement of the 3He(a,g)7Be reaction cross section at high energies
- Large-scale prediction of the parity distribution in the nuclear level density and application to astrophysical reaction rates
- Testing the role of SNe Ia for Galactic chemical evolution of p-nuclei with 2D models and with s-process seeds at different metallicities
- Alpha induced reaction cross section measurements on 162Er for the astrophysical gamma process
- Challenges in nucleosynthesis of trans-iron elements
- Experimental constraints on the -ray strength function in Zr using partial cross sections of the Y(p,)Zr reaction
- Total and partial cross sections of the Sn()Te reaction measured via in-beam -ray spectroscopy
- Measurements of Gd(p,)Tb and Gd(p,n)Tb reaction cross sections for the astrophysical process
- Investigation of alpha-induced reactions on 127I for the astrophysical gamma process
- Test of statistical model cross section calculations for -induced reactions on Ag at energies of astrophysical interest
- Measurement of (alpha,n) reaction cross sections of erbium isotopes for testing astrophysical rate predictions
- Direct study of the alpha-nucleus optical potential at astrophysical energies using the 64Zn(p,alpha)61Cu reaction
- Cross-section measurement of the Ba(p,)La reaction for -process nucleosynthesis
- KADoNiS-: The astrophysical -process database
Cited by in corpus (8)
- The activation method for cross section measurements in nuclear astrophysics
- Cross section of He(,)Be around the Be proton separation threshold
- Cross section of -induced reactions on Au at sub-Coulomb energies
- Experimental techniques to study the process for nuclear astrophysics at the Cologne accelerator laboratory
- Determination of -optical potential for reactions with p-nuclei from the study of (,n) reactions in the astrophysically relevant energy region
- Experimental determination of the He(,)Be reaction cross section above the Be proton separation threshold
- Cross sections at sub-Coulomb energies: full optical model vs.\ barrier transmission for Ca +
- High precision half-life measurement of Cs and Xe with γ-spectroscopy