Five independent TDA amplitudes, each with four partial-wave components, describe Bc o BV decays; global fits show tensor couplings are essential and most measured rates agree with data.
Final-state rescattering mech- anism of charmed baryon decays.JHEP, 11:072
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abstract
The dynamical studies on the non-leptonic weak decays of charmed baryons are always challenging, due to the large non-perturbative contributions at the charm scale. In this work, we develop the final-state rescattering mechanism to study the two-body non-leptonic decays of charmed baryons. The final-state interaction is a physical picture of long-distance effects. Instead of using the Cutkosky rule to calculate the hadronic triangle diagrams which can only provide the imaginary part of decay amplitudes, we point out that the loop integral is more appropriate, as both the real parts and the imaginary parts of amplitudes can be calculated completely. In this way, it can be obtained for the non-trivial strong phases which are essential to calculate CP violations. With the physical picture of long-distance effects and the reasonable method of calculations, it is amazingly achieved that all the nine existing experimental data of branching fractions for the $\Lambda_c^+$ decays into an octet light baryon and a vector meson can be explained by only one parameter of the model. Besides, the decay asymmetries and CP violations are not sensitive to the model parameter, since the dependence on the parameter is mainly cancelled in the ratios, so that the theoretical uncertainties on these observables are lowered down.
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Final-state rescattering predicts branching fractions for B0 and Bs0 to Lambda_c+ anti-Lambda_c- that match LHCb data, with near-zero CP asymmetries and sizable longitudinal polarization in the B0 channel.
A nonrelativistic quark-diquark model, parameterized via the B_c meson spectrum, predicts ground-state masses near 8.0 GeV for Ω_ccb and 11.0 GeV for Ω_cbb, along with magnetic moments and Regge trajectories.
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Topological Diagram Analysis of Charmed Baryon Decays with Vector Mesons
Five independent TDA amplitudes, each with four partial-wave components, describe Bc o BV decays; global fits show tensor couplings are essential and most measured rates agree with data.
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Final-state rescattering in $\bar{B}^{0}_{(s)}\to \Lambda^{+}_{c}\bar{\Lambda}^{-}_{c}$ decays
Final-state rescattering predicts branching fractions for B0 and Bs0 to Lambda_c+ anti-Lambda_c- that match LHCb data, with near-zero CP asymmetries and sizable longitudinal polarization in the B0 channel.
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Mass spectrum, magnetic moments and Regge trajectories of $\Omega_{ccb}$ and $\Omega_{cbb}$ baryons in the nonrelativistic quark--diquark model
A nonrelativistic quark-diquark model, parameterized via the B_c meson spectrum, predicts ground-state masses near 8.0 GeV for Ω_ccb and 11.0 GeV for Ω_cbb, along with magnetic moments and Regge trajectories.