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Dao-Wei Wang

Publications and source records attributed to Dao-Wei Wang.

7 recordsLinked to original sources

Improved analysis on the semi-leptonic decay $Λ_c\toΛ\ell^+ν$ from QCD light-cone sum rules

With the renewed distribution amplitudes of $Λ$, we present a reanalysis on the semi-leptonic decay $Λ_c\toΛ\ell^+ν$ by use of the light-cone sum rule approach with two kinds of interpolating currents. The form factors describing the decay process are obtained and used to predict the decay width. With the inclusion of up to twist-6 contributions the calculations give the decay width $Γ=(10.04\pm0.88)\times10^{-14}{GeV}$ for Chernyak-Zhitnitsky-type(CZ-type) current and $Γ=(6.45\pm1.06)\times10^{-14}{GeV}$ for Ioffe-type current. The Ioffe-type interpolating current is found to be better for the estimation of the decay rate from a comparison with experimental data.

hep-ph↗

Light-cone QCD Sum Rules for the $Λ$ Baryon Electromagnetic Form Factors and its magnetic moment

We present the light-cone QCD sum rules up to twist 6 for the electromagnetic form factors of the $Λ$ baryon. To estimate the magnetic moment of the baryon, the magnetic form factor is fitted by the dipole formula. The numerical value of our estimation is $μ_Λ=-(0.64\pm0.04)μ_N$, which is in accordance with the experimental data and the existing theoretical results. We find that it is twist 4 but not the leading twist distribution amplitudes that dominate the results.

hep-ph↗

Semileptonic decay Lambda_c-->Lambda \ell^+ νfrom QCD light-cone sum rules

We present the study of the semileptonic decay Λ_c to Λ\ell^+νby using the light-cone sum rule approach. Distribution amplitudes (DAs) for the Λbaryon are discussed to the leading order conformal spin, and QCD sum rule estimate for the corresponding parameters is presented. The form factors describing the decay are calculated and used to predict the decay width and the decay asymmetry parameter α. With the inclusion of twist-3 contributions the calculated decay width Γ=(7.2+/-2.0)X10^{-14} GeV as well as asymmetry α=-(0.88+/-0.03) is found in good agreement with the experimental data, while there are appreciable deviations from experiment values when the higher twist contributions are included.

hep-ph↗

Light-cone QCD sum rules for the semileptonic decay Lambda_b --> p lepton anti-neutrino

The exclusive semileptonic heavy baryon decay Λ_b\to p l\barνis investigated using light-cone sum rule method in both full QCD and HQET. The form factors describing the decay are calculated and used to predict the decay width and differential distribution. The total decay width obtained from full QCD is in agreement with the previous theoretical predictions while the HQET result are typically one order smaller. Both results are consistent with the experimental upper limit and can be compared to the refined experimental data in the future.

hep-ph↗

Excited heavy baryon masses to order Lambda_{QCD}/m_Q from QCD sum rules

Masses of the p-wave excited heavy baryons have been calculated to the Lambda_{QCD}/m_Q order using QCD sum rule method within the framework of heavy quark effective theory. Numerical results for kinetic energy lambda_1 and chromo-magnetic interaction lambda_2 are presented. The splitting between spin 1/2 and 3/2 doublet derived from our calculation is given, for which the agreement with the current experiment is desirable.

hep-ph↗

Choice of heavy baryon currents in QCD sum rules

In this paper we investigate the effects due to the mixing of two interpolating currents for ground state baryons within the framework of Heavy Quark Effective Theory using the QCD sum rule approach. Both two-point and three-point sum rules, thus the mass, coupling constant and Isgur-Wise function sum rules are considered. It is interesting to contrast those results with each other. Based on the Isgur-Wise functions obtained in this paper, we also analyze the effects of current mixing to Lambda-type and and Sigma-type semi-leptonic decays Lambda_b-->Lambda_c\ell\barν, Σ_b-->Σ_c\ell\barνand Σ_b-->Σ^*_c\ell\barν. Decay widths corresponding to various mixing parameters are obtained and can be compared to the experimental data.

hep-ph↗

Improved analysis for the baryon masses to order Lambda_{QCD}/m_Q from QCD sum rules

We use the QCD sum rule approach to calculate the masses of the Lambda_Q and Sigma_Q baryons to the Lambda_{QCD}/m_Q order within the framework of heavy quark effective theory. We compare the direct approach and the covariant approach to this problem. Two forms of currents have been adopted in our calculation and their effects on the results are discussed. Numerical results obtained in both direct and covariant approaches are presented. The splitting between spin 1/2 and 3/2 doublets derived from our calculation is {Σ_Q^*}^2-Σ_Q^2\simeq 0.35\pm 0.03 GeV^2 which is in good agreement with the experiment.

hep-ph↗