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Электронный каталог: Tran, C. T. - Radiative Decays D&sup(* )&sub((s)) *> D&sub((s))*g in Covariant Confined Quark Model
Tran, C. T. - Radiative Decays D&sup(* )&sub((s)) *> D&sub((s))*g in Covariant Confined Quark Model
Статья
Автор: Tran, C. T.
Chinese Physics C [Electronic resource]: Radiative Decays D&sup(* )&sub((s)) *> D&sub((s))*g in Covariant Confined Quark Model
б.г.
ISBN отсутствует
Автор: Tran, C. T.
Chinese Physics C [Electronic resource]: Radiative Decays D&sup(* )&sub((s)) *> D&sub((s))*g in Covariant Confined Quark Model
б.г.
ISBN отсутствует
Статья
Tran, C.T.
Radiative Decays D&sup(* )&sub((s)) *> D&sub((s))*g in Covariant Confined Quark Model / C.T.Tran, M.A.Ivanov, P.Santorelli, Q.C.Vo // Chinese Physics C [Electronic resource]. – 2024. – Vol. 48, No. 2. – P. 023103. – URL: https://doi.org/10.1088/1674-1137/ad102c. – Bibliogr.: 56.
Radiative decays D&sup(* )&sub((s)) *> D&sub((s))*g are revisited in light of new experimental data from the BaBar and BESIII Collaborations. The radiative couplings g&sub(D) &sup(* )&sub(D&sub(*g) encoding nonperturbative QCD effects are calculated in the framework of the covariant confined quark model developed by us. We compare our results with other theoretical studies and experimental data. The couplings (in GeV&sup(-1)) | g&sub(D) &sup(* +)&sub(D) &sup(+)&sub(*g) | = 0.45(9) and | g&sub(D) &sup(* 0)&sub(D) &sup(0)&sub(*g)| = 1.72(34) calculated in our model agree with the corresponding experimental data )) | g&sub(D)&sup(* +)&sub(D)&sup(+)&sub(*g) | = 0.47(7) and | g&sub(D)&sup(* 0)&sub(D)&sup(0)&sub(*g)| = 1.77(16). The most interesting case is the decay D&sup(* )&sub(s) *> D&sub(s)*g, for which a recent prediction based on light-cone sum rules at next-to-leading order | g&sub(D)&sup(* )&sub(s)&sub(D)&sub(s)&sub(*g) | =0.60(19) deviates from the first (and only to date) lattice QCD result | g&sub(D)&sup(* )&sub(s)&sub(D)&sub(s)&sub(*g) | = 0.11(2) at nearly 3*s. Our calculation yields | g&sub(D) &sup(* )&sub(s)&sub(D)&sub(s)&sub(*g) | =0.29(6) , which falls somehow between the two mentioned results, although it is larger than those predicted in other studies using quark models or QCD sum rules.
ОИЯИ = ОИЯИ (JINR)2024
Спец.(статьи,препринты) = С 324.1д - Квантовая хромодинамика$
Спец.(статьи,препринты) = С 323.5 - Теория взаимодействия частиц при высоких энергиях$
Бюллетени = 23/024
Tran, C.T.
Radiative Decays D&sup(* )&sub((s)) *> D&sub((s))*g in Covariant Confined Quark Model / C.T.Tran, M.A.Ivanov, P.Santorelli, Q.C.Vo // Chinese Physics C [Electronic resource]. – 2024. – Vol. 48, No. 2. – P. 023103. – URL: https://doi.org/10.1088/1674-1137/ad102c. – Bibliogr.: 56.
Radiative decays D&sup(* )&sub((s)) *> D&sub((s))*g are revisited in light of new experimental data from the BaBar and BESIII Collaborations. The radiative couplings g&sub(D) &sup(* )&sub(D&sub(*g) encoding nonperturbative QCD effects are calculated in the framework of the covariant confined quark model developed by us. We compare our results with other theoretical studies and experimental data. The couplings (in GeV&sup(-1)) | g&sub(D) &sup(* +)&sub(D) &sup(+)&sub(*g) | = 0.45(9) and | g&sub(D) &sup(* 0)&sub(D) &sup(0)&sub(*g)| = 1.72(34) calculated in our model agree with the corresponding experimental data )) | g&sub(D)&sup(* +)&sub(D)&sup(+)&sub(*g) | = 0.47(7) and | g&sub(D)&sup(* 0)&sub(D)&sup(0)&sub(*g)| = 1.77(16). The most interesting case is the decay D&sup(* )&sub(s) *> D&sub(s)*g, for which a recent prediction based on light-cone sum rules at next-to-leading order | g&sub(D)&sup(* )&sub(s)&sub(D)&sub(s)&sub(*g) | =0.60(19) deviates from the first (and only to date) lattice QCD result | g&sub(D)&sup(* )&sub(s)&sub(D)&sub(s)&sub(*g) | = 0.11(2) at nearly 3*s. Our calculation yields | g&sub(D) &sup(* )&sub(s)&sub(D)&sub(s)&sub(*g) | =0.29(6) , which falls somehow between the two mentioned results, although it is larger than those predicted in other studies using quark models or QCD sum rules.
ОИЯИ = ОИЯИ (JINR)2024
Спец.(статьи,препринты) = С 324.1д - Квантовая хромодинамика$
Спец.(статьи,препринты) = С 323.5 - Теория взаимодействия частиц при высоких энергиях$
Бюллетени = 23/024