The application of light front holographic QCD to B physics
arXiv:1410.8552 · doi:10.1139/cjp-2014-0596
Abstract
Light front Holography is a formalism developed by Brodsky and de Téramond in which analytic forms for the hadronic bound state wavefunctions can be obtained. We have used the holographic light front wavefunctions thus obtained in order to calculate the distribution amplitudes of the light vector mesons and . As a result, we are able to calculate the form factors for transitions as well as contributions in radiative decays. We compare our predictions to the available experimental data.
5 pages, 3 figures. To appear in the proceedings of the Theory Canada 9 conference held at Wilfred Laurier University, Waterloo, Canada (June 12th to June 15th 2014)
References in corpus (10)
- Light-Front Holography: A First Approximation to QCD
- Lattice QCD calculation of form factors describing the rare decays and
- B->V gamma Beyond QCD Factorisation
- Study of B --> pi l nu and B --> rho l nu Decays and Determination of |V_ub|
- Twist-4 Distribution Amplitudes of the K and Mesons in QCD
- Measurement of the isospin asymmetry in decays
- Radiative and Electroweak Penguin Decays of B Mesons
- Predicting B->K* form factors in light-cone QCD
- Predicting the form factors using AdS/QCD Distribution Amplitudes for the meson
- Light-Front Holography and Novel Effects in QCD