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  • The doublet capture rate Lambda(1/2) of the negative muon capture in deuterium is calculated employing the nuclear wave functions generated from accurate nucleon-nucleon (NN) potentials constructed at next-to-next-to-next-to-leading order of heavy-baryon chiral perturbation theory and the weak meson exchange current operator derived within the same formalism. All but one of the low-energy constants that enter the calculation were fixed from pion-nucleon and nucleon-nucleon scattering data. The low-energy constant (d) over cap (R) (c(D)). which cannot be determined from the purely two-nucleon data, was extracted recently from the triton beta-decay and the binding energies of the three-nucleon systems. The calculated values of Lambda(1/2) show a rather large spread for the used values of the (d) over cap (R). Precise measurement of Lambda(1/2) in the future will not only help to constrain the value of (d) over cap (R), but also provide a highly nontrivial test of the nuclear chiral EFT framework. Besides, the precise knowledge of the constant (d) over cap (R) will allow for consistent calculations of other two-nucleon weak processes, such as proton-proton fusion and solar neutrino scattering on deuterons, which are important for astrophysics.
  • The doublet capture rate Lambda(1/2) of the negative muon capture in deuterium is calculated employing the nuclear wave functions generated from accurate nucleon-nucleon (NN) potentials constructed at next-to-next-to-next-to-leading order of heavy-baryon chiral perturbation theory and the weak meson exchange current operator derived within the same formalism. All but one of the low-energy constants that enter the calculation were fixed from pion-nucleon and nucleon-nucleon scattering data. The low-energy constant (d) over cap (R) (c(D)). which cannot be determined from the purely two-nucleon data, was extracted recently from the triton beta-decay and the binding energies of the three-nucleon systems. The calculated values of Lambda(1/2) show a rather large spread for the used values of the (d) over cap (R). Precise measurement of Lambda(1/2) in the future will not only help to constrain the value of (d) over cap (R), but also provide a highly nontrivial test of the nuclear chiral EFT framework. Besides, the precise knowledge of the constant (d) over cap (R) will allow for consistent calculations of other two-nucleon weak processes, such as proton-proton fusion and solar neutrino scattering on deuterons, which are important for astrophysics. (en)
Title
  • Calculation of doublet capture rate for muon capture in deuterium within chiral effective field theory
  • Calculation of doublet capture rate for muon capture in deuterium within chiral effective field theory (en)
skos:prefLabel
  • Calculation of doublet capture rate for muon capture in deuterium within chiral effective field theory
  • Calculation of doublet capture rate for muon capture in deuterium within chiral effective field theory (en)
skos:notation
  • RIV/61389005:_____/12:00384864!RIV13-AV0-61389005
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  • I, P(GAP203/11/0701), P(LC06002)
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  • 1-2
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  • 125804
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  • RIV/61389005:_____/12:00384864
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  • negative muon capture; deuteron; effective field theory; meson exchange currents (en)
http://linked.open.../riv/klicoveSlovo
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  • NL - Nizozemsko
http://linked.open...ontrolniKodProRIV
  • [18B8B371E2CF]
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  • Physics Letters. B
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  • 709
http://linked.open...iv/tvurceVysledku
  • Tater, Miloš
  • Adam, Jiří
  • Epelbaum, E.
  • Machleidt, R.
  • Ricci, P.
  • Truhlík, Emil
http://linked.open...ain/vavai/riv/wos
  • 000302111200014
issn
  • 0370-2693
number of pages
http://bibframe.org/vocab/doi
  • 10.1016/j.physletb.2012.01.065
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