Quark-gluon hybrids within a constituent quark-gluon model

Dr. Jorge Segovia is an Alexander von Humboldt postdoctoral researcher in the Brambilla's group Physik-Department T30f at the Technische Universitaet Muenchen.
The main goal of this talk is to present a research project that aims to compute properties of hybrid mesons within the constituent quark-gluon model (CQGM). This approach is a simple and powerful computational method that allows one to compute a wide range of physical observables and to explore new ideas in a simple way. Moreover, the determination of other physical observables beyond masses in the case of hybrid baryons is very important because all quantum numbers are allowed and thus it is more difficult to distinguish an exotic candidate from a conventional one. The physical observables that will be theoretically computed in this research project are of invaluable significance for the experimental hadron physics community, because one of the main goals for the near future of the three mayor experiments in hadron physics (LHCb@CERN, PANDA@FAIR and GlueX@Jlab12) is the unambiguous determination of hadrons with valence gluons.