B$_1$B$_{s0}$K and B$_1$B$_{s1}$K strong couplings in three-point QCD sum rules
An improved calculation of the strong coupling constants of B$_1$B$_{s0}$K and B$_1$B$_{s1}$K vertices is presented in the framework of the three-point QCD sum rules. The coupling constants are calculated, when both the B$_{s0}$(B$_{s1}$) and K states are off-shell. Considering the $SU_f(3)$ symmetr...
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creator | Asgarian, Mohammad Ali |
description | An improved calculation of the strong coupling constants of B$_1$B$_{s0}$K
and B$_1$B$_{s1}$K vertices is presented in the framework of the three-point
QCD sum rules. The coupling constants are calculated, when both the
B$_{s0}$(B$_{s1}$) and K states are off-shell. Considering the $SU_f(3)$
symmetry, the results are compared with the existing predictions. |
doi_str_mv | 10.48550/arxiv.2009.06270 |
format | Article |
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and B$_1$B$_{s1}$K vertices is presented in the framework of the three-point
QCD sum rules. The coupling constants are calculated, when both the
B$_{s0}$(B$_{s1}$) and K states are off-shell. Considering the $SU_f(3)$
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and B$_1$B$_{s1}$K vertices is presented in the framework of the three-point
QCD sum rules. The coupling constants are calculated, when both the
B$_{s0}$(B$_{s1}$) and K states are off-shell. Considering the $SU_f(3)$
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and B$_1$B$_{s1}$K vertices is presented in the framework of the three-point
QCD sum rules. The coupling constants are calculated, when both the
B$_{s0}$(B$_{s1}$) and K states are off-shell. Considering the $SU_f(3)$
symmetry, the results are compared with the existing predictions.</abstract><doi>10.48550/arxiv.2009.06270</doi><oa>free_for_read</oa></addata></record> |
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title | B$_1$B$_{s0}$K and B$_1$B$_{s1}$K strong couplings in three-point QCD sum rules |
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