Abstract
The triple-alpha process leading to the formation of stable carbon in the Universe is one of the most important nuclear astrophysical processes. The radiative width of the so-called Hoyle state, involving the 7.654 MeV E0 and the 3.2148 MeV E2 transitions, is known with 10-12% accuracy. A novel, more direct approach to determining the width is proposed here, based on the measurement of the E0 and the E2 internal pair conversion intensities. We report on the development of a new magnetic pair spectrometer with high sensitivity for electron-positron pairs and with excellent energy resolution. © Owned by the authors 2012.
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CITATION STYLE
Kibédi, T., Stuchbery, A. E., Dracoulis, G. D., & Robertson, K. A. (2012). Towards the pair spectroscopy of the Hoyle state in 12C. In EPJ Web of Conferences (Vol. 35). https://doi.org/10.1051/epjconf/20123506001
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