Muon Capture on the Deuteron – The MuSun Experiment

V. A. Andreev,R. M. Carey,V. A. Ganzha, A. Gardestig,T. Gorringe, F. E. Gray,D. W. Hertzog,M. Hildebrandt, P. Kammel, B. Kiburg, S. Knaack,P. A. Kravtsov, A. G. Krivshich, K. Kubodera,B. Lauss, K. R. Lynch, E. M. Maev, O. E. Maev,F. Mulhauser,F. Myhrer, C. Petitjean,G. E. Petrov, R. Prieels, G. N. Schapkin, G. G. Semenchuk, M. A. Soroka,V. Tishchenko,A. A. Vasilyev,A. A. Vorobyov,M. E. Vznuzdaev, P. Winter

arxiv(2010)

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摘要
We propose to measure the rate for muon capture on the deuteron to better than 1.5 process on a nucleus that can both be calculated and measured to a high degree of precision. The measurement will provide a benchmark result, far more precise than any current experimental information on weak interaction processes in the two-nucleon system. Moreover, it can impact our understanding of fundamental reactions of astrophysical interest, like solar pp fusion and the ν+d reactions observed by the Sudbury Neutrino Observatory. Recent effective field theory calculations have demonstrated, that all these reactions are related by one axial two-body current term, parameterized by a single low-energy constant. Muon capture on the deuteron is a clean and accurate way to determine this constant. Once it is known, the above mentioned astrophysical, as well as other important two-nucleon reactions, will be determined in a model independent way at the same precision as the measured muon capture reaction.
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