The neutron inelastic scattering of carbon-12, populating the Hoyle state, is a reaction of interest for the triple-alpha process. The inverse process (neutron upscattering) can enhance the Hoyle state’s decay rate to the bound states of12C, effectively increasing the overall triple-alpha reaction rate. The cross section of this reaction is impossible to measure experimentally but has been determined here at astrophysically-relevant energies using detailed balance. Using a highly-collimated monoenergetic beam, here we measure neutrons incident on the Texas Active Target Time Projection Chamber (TexAT TPC) filled with CO2gas, we measure the 3
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Abstract α -particles (arising from the decay of the Hoyle state following inelastic scattering) and a cross section is extracted. Here we show the neutron-upscattering enhancement is observed to be much smaller than previously expected. The importance of the neutron-upscattering enhancement may therefore not be significant aside from in very particular astrophysical sites (e.g. neutron star mergers). -
Soltesz, D. ; Mamun, M. A. ; Voinov, A. V. ; Meisel, Z. ; Brown, B. A. ; Brune, C. R. ; Grimes, S. M. ; Hadizadeh, H. ; Hornish, M. ; Massey, T. N. ; et al ( , Physical Review C)
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Almaraz-Calderon, S. ; Tan, W. P. ; Aprahamian, A. ; Bucher, B. ; Roberts, A. ; Wiescher, M. ; Brune, C. R. ; Massey, T. N. ; Özkan, N. ; Güray, R. T. ; et al ( , Physical Review C)