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D. Pekurovsky

Publications and source records attributed to D. Pekurovsky.

5 recordsLinked to original sources

Calculation Of Hadronic Matrix Elements Relevant For Delta I=1/2 Rule And Epsilon-prime In Lattice QCD With Staggered Fermions

This thesis presents the setup and results of numerical calculation of hadronic matrix elements of Delta S=1 weak operators, with the aim of studying the Delta I=1/2 rule and direct CP violation. Such study provides a useful comparison of the Standard Model predictions with experiment. We work within the framework of (partially quenched) Lattice QCD with the staggered (Kogut-Susskind) version of fermions. We have achieved a reasonable statistical accuracy in calculating all matrix elements in question. Based on these results, we find that the Delta I=1/2 channel in K to 2 Pi decays is enhanced compared to the Delta I=3/2 channel. This is consistent with experiment, although the exact amount of enhancement is subject to considerable systematic errors. I also discuss the difficulties encountered in attempting to calculate the direct CP violation parameter epsilon-prime and our approximate solution leading to a crude estimate. In a related study we nonperturbatively compute bilinear renormalization factors Z_S and Z_P, which are needed for our estimate of epsilon-prime and also allow to calculate the light quark masses. For the strange quark mass in NDR MS-bar scheme at 2 GeV in the quenched approximation we find: m_s = 102.9 +/- 5.1 MeV.

hep-lat

Lattice calculation of matrix elements relevant for Delta I=1/2 rule and epsilon-prime

We have gained enough statistical precision to distinguish signal from noise in matrix elements of all operators relevant for the Delta I=1/2 rule in kaon decays and for the direct CP violation parameter epsilon-prime. We confirm significant enhancement of Delta I=1/2 transitions observed in experiments, although a few large systematic uncertainties remain in our predictions: higher-order chiral corrections and lattice spacing dependence. The estimate of epsilon-prime parameter is further complicated by the problem of matching lattice and continuum operators.

hep-lat

Matrix elements relevant for Delta I=1/2 rule and epsilon-prime from Lattice QCD with staggered fermions

We perform a study of matrix elements relevant for the Delta I=1/2 rule and the direct CP-violation parameter epsilon-prime from first principles by computer simulation in Lattice QCD. We use staggered (Kogut-Susskind) fermions, and employ the chiral perturbation theory method for studying K to 2 Pi decays. Having obtained a reasonable statistical accuracy, we observe an enhancement of the Delta I=1/2 amplitude, consistent with experiment within our large systematic errors. Finite volume and quenching effects have been studied and were found small compared to noise. The estimates of epsilon-prime are hindered by large uncertainties associated with operator matching. In this paper we explain the simulation method, present the results and address the systematic uncertainties.

hep-lat

Delta I=1/2 rule from staggered fermions

We present our latest results for the Delta I=1/2 rule, obtained on quenched ensembles with beta=6.0 and 6.2, and a set of N_f=2 configurations with beta=5.7. The statistical noise is quite under control. We observe an enhancement of the Delta I=1/2 amplitude consistent with experiment, although the systematic errors are still large. We also present a non-perturbative determination of Z_P, Z_S and the strange quark mass. We briefly discuss our progress in calculating epsilon-prime.

hep-lat

On the Nf and a Dependence of BK

We present results of a study of BK using tadpole improved gauge invariant staggered operators. Using three ensembles of 16^3x32 configurations with varying numbers of dynamical flavors, we observe a small dependence on Nf. Using seven quenched ensembles between beta=5.7 and beta=6.2 we extrapolate to a=0.

hep-lat