Abstract

We present the calculation of the $K_{l3}$ form factors with $N_f = 2 + 1$ nonperturbatively $O(a)$-improved Wilson quark action and Iwasaki gauge action at the physical point on a large volume of (10.9 fm)$^3$ at one lattice spacing of $a = 0.085$ fm. We extract the form factors from 3-point functions with three different time separations between the source and sink operators to confirm suppression of excited state contributions. The form factors are calculated in very close to the zero momentum transfer, $q^2 = 0$, thanks to the large volume, so that stable interpolations to $q^2 = 0$ are carried out. Using our form factors, we obtain the form factor at $q^2 = 0$, $f_+(0) = 0.9603(16)(^{+14}_{\ -4})(44)(19)(1)$, where the first, second, and fifth errors are statistical, systematic errors from fit functions and the isospin breaking effect, respectively. The third and fourth errors denote the finite lattice spacing effects estimated from the renormalization factor and contribution beyond the leading order SU(3) chiral perturbation theory (ChPT). The result of $f_+(0)$ yields the Cabibbo-Kobayashi-Maskawa (CKM) matrix element, $|V_{us}| = 0.2255(13)(4)$, where the first error comes from our calculation and the second from the experiment. This value is consistent with the ones determined from the unitarity of the CKM matrix and the $K_{l2}$ decay within one standard deviation, while it is slightly larger than recent lattice calculations by at most 1.5 $\sigma$. Furthermore, we evaluate the shape of the form factors and the phase space integral from our results. We confirm that those results are consistent with the experiment, and also $|V_{us}|$ determined with our phase space integral agrees with the one in the above.

Highlights

  • Search for signals beyond the standard model (BSM) is an important task in the field of the particle physics

  • We present the calculation of the Kl3 form factors with Nf 1⁄4 2 þ 1 nonperturbatively OðaÞ-improved Wilson quark action and Iwasaki gauge action at the physical point on a large volume of ð10.9 fmÞ3 at one lattice spacing of a 1⁄4 0.085 fm

  • We use the configurations generated with the Iwasaki gauge action [16] and the stout-smeared Clover quark action at the physical point on ðL=aÞ3 × T=a 1⁄4 1283 × 128 lattice corresponding to ð10.9 fmÞ4

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Summary

INTRODUCTION

Search for signals beyond the standard model (BSM) is an important task in the field of the particle physics. The most recent study in the Nf 1⁄4 2 þ 1 þ 1 QCD [10] using the staggered-type quark action reported that using their value of fþð0Þ there is a clear deviation of jVusj in more than 2σ from the ones in the SM prediction and the Kl2 decay Another Nf 1⁄4 2 þ 1 þ 1 calculation using the twisted quark action [9] obtained a similar result. Since we calculate the form factors in a wide range of q2, the shape of the form factors and the phase space integral are successfully evaluated from our results Those values are compared with the experiment and previous lattice QCD results. Appendices explain interpolating functions based on the SU(3) chiral perturbation theory (ChPT) used in our analysis and tables for some interpolation results

CALCULATION METHOD
SET UP
Kl3 FORM FACTORS
Wrapping around effect
Form factors
Shape of form factors
Phase space integral
RESULT
Findings
CONCLUSION

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