We investigate the vector and scalar form factors relevant for Kl3 semileptonic decays using maximally twisted-mass fermions with two flavors of dynamical quarks (Nf = 2). The simulations cover pion masses as light as 260 MeV and four values of the lattice spacing, ranging from ~0.05 up to ~0.1 fm, which allow to compute directly, for the first time, the continuum limit for the vector form factor at zero-momentum transfer, f_+(0). The preliminary result is f_+(0) = 0.9544(68), where the error is statistical only. We also extrapolate both form factors to the physical point and study their momentum dependence. Our results are in good agreement with those obtained from a dispersion analyses of the experimental data. Together with the form factors, we analyze the ratio of the leptonic decay constants f_K / f_pi, by imposing the constraint coming from the Callan-Treiman theorem, obtaining at the physical point f_K / f_pi = 1.190(8). Combining our results for f_+(0) and f_K / f_pi with the experimental measurements of the leptonic and semilpetonic decay rates, and using the determination of |V_ud| from nuclear beta decays, we determine the values of the Cabibbo angle |V_us| from both Kl3 and Kl2 decays, obtaining |V_us|^{Kl3} = 0.2266(17) and $|V_us|^{Kl2} = 0.2258(16).

Lubicz, V., Mescia, F., Orifici, L., Simula, S., Tarantino, C. (2010). Improved analysis of the scalar and vector form factors of kaon semileptonic decays with Nf = 2 twisted-mass fermions. In Proceedings of the 28th International Symposium on Lattice Field Theory, Lattice 2010 (pp.316).

Improved analysis of the scalar and vector form factors of kaon semileptonic decays with Nf = 2 twisted-mass fermions

LUBICZ, Vittorio;TARANTINO, CECILIA
2010-01-01

Abstract

We investigate the vector and scalar form factors relevant for Kl3 semileptonic decays using maximally twisted-mass fermions with two flavors of dynamical quarks (Nf = 2). The simulations cover pion masses as light as 260 MeV and four values of the lattice spacing, ranging from ~0.05 up to ~0.1 fm, which allow to compute directly, for the first time, the continuum limit for the vector form factor at zero-momentum transfer, f_+(0). The preliminary result is f_+(0) = 0.9544(68), where the error is statistical only. We also extrapolate both form factors to the physical point and study their momentum dependence. Our results are in good agreement with those obtained from a dispersion analyses of the experimental data. Together with the form factors, we analyze the ratio of the leptonic decay constants f_K / f_pi, by imposing the constraint coming from the Callan-Treiman theorem, obtaining at the physical point f_K / f_pi = 1.190(8). Combining our results for f_+(0) and f_K / f_pi with the experimental measurements of the leptonic and semilpetonic decay rates, and using the determination of |V_ud| from nuclear beta decays, we determine the values of the Cabibbo angle |V_us| from both Kl3 and Kl2 decays, obtaining |V_us|^{Kl3} = 0.2266(17) and $|V_us|^{Kl2} = 0.2258(16).
2010
Lubicz, V., Mescia, F., Orifici, L., Simula, S., Tarantino, C. (2010). Improved analysis of the scalar and vector form factors of kaon semileptonic decays with Nf = 2 twisted-mass fermions. In Proceedings of the 28th International Symposium on Lattice Field Theory, Lattice 2010 (pp.316).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11590/177736
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