4.5 Article

Testing semilocal chiral two-nucleon interaction in selected electroweak processes

期刊

PHYSICAL REVIEW C
卷 93, 期 6, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevC.93.064002

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资金

  1. Polish National Science Center [DEC-2013/10/M/ST2/00420, DEC-2013/11/N/ST2/03733]
  2. ERC [259216 NuclearEFT]
  3. DFG [SFB/TR 16]
  4. Chinese Academy of Science(CAS) [2015VMA076]

向作者/读者索取更多资源

The recently developed semilocal improved chiral nucleon-nucleon interaction is used for the first time to study several electromagnetic and weak processes at energies below the pion production threshold. Cross sections and selected polarization observables for deuteron photodisintegration, nucleon-deuteron radiative capture, three-body He-3 photodisintegration, as well as capture rates for decays of the muonic H-2 and He-3 atoms are calculated. The Lippmann-Schwinger and Faddeev equations in momentum space are solved to obtain nuclear states. The electromagnetic current operator is taken as a single nucleon current supplemented by many-body contributions induced via the Siegert theorem. For muon capture processes the nonrelativistic weak current together with the dominant relativistic corrections is used. Our results compare well with experimental data, demonstrating the same quality as is observed for the semiphenomenological Argonne V18 potential. Compared to the older version of the chiral potential with a nonlocal regularization, a much smaller cut-off dependence is found for the state-of-art chiral local interaction employed in this paper. Finally, estimates of errors due to the truncation of the chiral expansion are given.

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