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Related papers: (phi -> K K) decay in light cone QCD

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The coupling constant of g_phi-pion-gamma decay is calculated using light cone QCD sum rules. A comparison of our result with the ones existing in the literature is presented.

High Energy Physics - Phenomenology · Physics 2009-11-11 C. Aydin , A. H. Yilmaz , M. Bayar

The coupling constant of g_phi-pi-gamma decay is calculated in the method of QCD sum rules. A comparison of our prediction on the coupling constant with the result obtained from analysis of the experimental data is performed.

High Energy Physics - Phenomenology · Physics 2009-11-10 Coskun Aydin , A. Hakan Yilmaz

The strong coupling constant g_(Ko* K pi) of the scalar Ko* meson decay to (K pi) is calculated in light cone QCD sum rule. The predicted value of the coupling constant g_(Ko* K pi) is in a good agreement with the experimental result.

High Energy Physics - Phenomenology · Physics 2007-05-23 T. M. Aliev , M. Savci , ; F. Yasuk

The coupling constant of f0-->omega-gamma decay is calculated using 3-point sum rule and light cone QCD sum rules. We investigate the results within the two-models which depend on mixing angle.

High Energy Physics - Phenomenology · Physics 2007-05-23 Coskun Aydin , A. Hakan Yilmaz

The coupling constant of rho --> eta gamma decay is calculated in the framework of light cone QCD sum rules. A comparison of our prediction on the coupling constant with the result obtained from analysis of the experimental data is…

High Energy Physics - Phenomenology · Physics 2007-05-23 T. M. Aliev , I. Kanik , A. Ozpineci

In this article, we calculate the strong coupling constant $g_{\Delta N\pi}$ and study the strong decay $\Delta^{++} \to p\pi$ with the light-cone QCD sum rules. The numerical value of the strong coupling constant $g_{\Delta N\pi}$ is…

High Energy Physics - Phenomenology · Physics 2008-12-18 Zhi-Gang Wang

The strong coupling constants $g_{{\Sigma_{Q}\Lambda_{Q}\pi}}$ ($Q=b$ and $c$) are studied in the framework of the light cone QCD sum rules using the most general form of the baryonic currents. The predicted coupling constants are used to…

High Energy Physics - Phenomenology · Physics 2009-11-06 K. Azizi , M. Bayar , A. Ozpineci

The light cone QCD sum rules method is used to calculate the transition form factor for the radiative (phi -> f_0 gamma) decay, assuming that the quark content of the (f_0) meson is pure (bar{s}s) state. The branching ratio is estimated to…

High Energy Physics - Phenomenology · Physics 2010-11-15 T. M. aliev , A. Ozpineci , M. Savci

Using the most general form of the interpolating currents, the coupling constants $g_{\Sigma_b\Sigma_b\pi}$ and $g_{\Sigma_c\Sigma_c\pi}$ are calculated within the light cone QCD sum rules approach. It is found that…

High Energy Physics - Phenomenology · Physics 2014-11-21 K. Azizi , M. Bayar , A. Ozpineci , Y. Sarac

We calculate the $\pi \Delta\Delta$ coupling $g_{\pi^0\Delta^{++}\Delta^{++}}$ using light cone QCD sum rule. Our result is $g_{\pi^0\Delta^{++}\Delta^{++}}=(11.8\pm 2.0)$.

Nuclear Theory · Physics 2009-11-06 Shi-Lin Zhu

We study $\phi a_0\gamma$- and $\phi\sigma\gamma$-vertices in the framework of the light cone QCD sum rules and we estimate the coupling constants g$_{\phi a_0\gamma}$ and g$_{\phi\sigma\gamma}$ utilizing $\omega\phi$-mixing. We compare our…

High Energy Physics - Phenomenology · Physics 2009-11-07 A. Gokalp , O. Yilmaz

The "g_{Delta N gamma}" coupling for the "Delta -> N gamma" decay is calculated in framework of the light cone QCD sum rules and is found to be g_{Delta N gamma} = (1.6 pm 0.2) GeV^(-1). Using this value of g_{Delta N gamma} we estimate the…

High Energy Physics - Phenomenology · Physics 2009-10-31 T. M. Aliev , M. Savci

In this article, we take the point of view that the light scalar meson $a_0(980)$ is a conventional $q\bar{q}$ state, and calculate the coupling constants $g_{a_0\eta\pi^0}$ and $g_{a_0 \eta'\pi^0}$ with the light-cone QCD sum rules. The…

High Energy Physics - Phenomenology · Physics 2009-12-15 Zhi-Gang Wang

We compare the predictions for the form factors f_+^{D->pi,K}(0) from QCD sum rules on the light-cone with recent experimental results. We find f_+^{D->pi}(0) = 0.63\pm 0.11, f_+^{D->K}(0) = 0.75\pm 0.12 and f_+^{D->pi}(0)/f_+^{D->K}(0)=…

High Energy Physics - Phenomenology · Physics 2008-11-26 Patricia Ball

The light cone QCD sum rules are derived for the $K^\ast K\pi$ coupling $g_{K^\ast K\pi} $ and the $\rho\pi\pi$ coupling $g_{\rho\pi\pi}$. The contribution from the excited states and the continuum is subtracted cleanly through the double…

Nuclear Theory · Physics 2009-10-31 Shi-Lin Zhu

We investigate the $\omega\sigma\gamma$-vertex and estimate the coupling constant g$_{\omega\sigma\gamma}$ in the framework of the light cone QCD sum rules. We compare our result with the values of this coupling constant deduced from a…

High Energy Physics - Phenomenology · Physics 2008-11-26 A. Gokalp , O. Yilmaz

We calculate the "pi Sigma Lambda" and "pi Sigma Sigma" coupling constants in light cone QCD sum rules for the structure "sigma_{alpha beta} gamma_5 p^alpha q^beta". A comparison of our results on these coupling constants with prediction of…

High Energy Physics - Phenomenology · Physics 2009-10-31 T. M. Aliev , M. Savci

Using the correlation function of the axial vector mesons, we present a QCD sum rule calculation for the decay constants f_pi and f_K. Our calculations are only weakly dependent on the SU(3) breaking-parameter for the QCD vacuum and give…

Nuclear Theory · Physics 2008-11-26 Seungho Choe , Su Houng Lee

We present a calculation of the coupling constant f0-->rho-gamma of and a0-->rho-gamma decays from the point of the light cone QCD sum rules. We estimate the coupling constants g_f0-rho-gamma and g_a0-rho-gamma which are an essential…

High Energy Physics - Phenomenology · Physics 2014-11-18 C. Aydin M. Bayar A. H. Yilmaz

The coupling constant g_{rho sigma gamma} is determined from light cone QCD sum rules. A comparison of our result with the ones existing in literature is presented.

High Energy Physics - Phenomenology · Physics 2009-11-07 T. M. aliev , A. Ozpineci , M. Savci
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