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Chiral behavior of $K \to \pi l \nu$ decay form factors in lattice QCD with exact chiral symmetry

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arxiv 1705.00884 v1 pith:RBTE24F7 submitted 2017-05-02 hep-lat hep-ph

classification hep-lathep-ph
keywords chiralfactorsformlatticequarkorderbehaviorcalculate
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We calculate the form factors of the $K \to \pi l \nu$ semileptonic decays in three-flavor lattice QCD, and study their chiral behavior as a function of the momentum transfer and the Nambu-Goldstone boson masses. Chiral symmetry is exactly preserved by using the overlap quark action, which enables us to directly compare the lattice data with chiral perturbation theory (ChPT). We generate gauge ensembles at a lattice spacing of 0.11fm with four pion masses covering 290-540 MeV and a strange quark mass m_s close to its physical value. By using the all-to-all quark propagator, we calculate the vector and scalar form factors with high precision. Their dependence on m_s and the momentum transfer is studied by using the reweighting technique and the twisted boundary conditions for the quark fields. We compare the results for the semileptonic form factors with ChPT at next-to-next-to leading order in detail. While many low-energy constants appear at this order, we make use of our data of the light meson electromagnetic form factors in order to control the chiral extrapolation. We determine the normalization of the form factors as f_+(0) = 0.9636(36)(+57/-35), and observe reasonable agreement of their shape with experiment.

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  1. Update of kaon semileptonic form factor using $N_f=2+1$ PACS10 configurations

    hep-lat 2024-12 conditional novelty 4.0 of 10

    Updated preliminary lattice QCD result for f_+(0) and |V_us| from PACS10 ensembles at three lattice spacings, consistent with other determinations and about 2 sigma from CKM unitarity.

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