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Abstract:
The influence of nuclear Fermi motion on the conventional mechanism of pion double charge exchange (DCX) is examined.Concrete calculations of the 0° excitation function over the energy region 0—300MeV are performed for the double isobaric analog DCX transition on 14C.The calculated results coincide very well with the experimental data for the energies above 100MeV,but are about a factor of 2—3 smaller than the experimental data around 50MeV.It indicates that the pure conventional mechanism seems incapable to fully explain the anomalous behavior of the low energy DCX,and some new mechanisms are needed.
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