2017Physical review. D/Physical review. D.Open access

Decay modes of the excited pseudoscalar glueball

Walaa I. Eshraim, Stefan Schramm

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Abstract

We study three different chiral Lagrangians that describe the two- and three-body decays of an excited pseudoscalar glueball, ${J}^{PC}={0}^{*\ensuremath{-}+}$, into light mesons and charmonium states as well as into a scalar and pseudoscalar glueball. We compute the decay channels for an excited pseudoscalar glueball with a mass of 3.7 GeV and consider a ground-state pseudoscalar glueball of mass 2.6 GeV, following predictions from lattice QCD simulations. These states and channels are in reach of the ongoing BESIII experiment and the PANDA experiments at the upcoming FAIR facility experiment. We present the resulting decay branching ratios with a parameter-free prediction.

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We study three different chiral Lagrangians that describe the two- and three-body decays of an excited pseudoscalar glueball, ${J}^{PC}={0}^{*\ensuremath{-}+}$, into light mesons and charmonium states as well as into a scalar and pseudoscalar glueball. We compute the decay channels for an excited pseudoscalar glueball with a mass of 3.7 GeV and consider a ground-state pseudoscalar glueball of mass 2.6 GeV, following predictions from lattice QCD simulations. These states and channels are in reach of the ongoing BESIII experiment and the PANDA experiments at the upcoming FAIR facility experiment. We present the resulting decay branching ratios with a parameter-free prediction.

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Available abstract

We study three different chiral Lagrangians that describe the two- and three-body decays of an excited pseudoscalar glueball, ${J}^{PC}={0}^{*\ensuremath{-}+}$, into light mesons and charmonium states as well as into a scalar and pseudoscalar glueball. We compute the decay channels for an excited pseudoscalar glueball with a mass of 3.7 GeV and consider a ground-state pseudoscalar glueball of mass 2.6 GeV, following predictions from lattice QCD simulations. These states and channels are in reach of the ongoing BESIII experiment and the PANDA experiments at the upcoming FAIR facility experiment. We present the resulting decay branching ratios with a parameter-free prediction.

Key concepts: Glueball, Pseudoscalar, Physics, Particle physics, Excited state, Meson, Nuclear physics, Lattice QCD

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