Quarkonium as a relativistic bound state on the light front

Yang Li, Pieter Maris, and James P. Vary
Phys. Rev. D 96, 016022 – Published 26 July 2017
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Abstract

We study charmonium and bottomonium as relativistic bound states in a light-front quantized Hamiltonian formalism. The effective Hamiltonian is based on light-front holography. We use a recently proposed longitudinal confinement to complete the soft-wall holographic potential for the heavy flavors. The spin structure is generated from the one-gluon exchange interaction with a running coupling. The adoption of asymptotic freedom improves the spectroscopy compared with previous light-front results. Within this model, we compute the mass spectroscopy, decay constants and the r.m.s. radii. We also present a detailed study of the obtained light-front wave functions and use the wave functions to compute the light-cone distributions, specifically the distribution amplitudes and parton distribution functions. Overall, our model provides a reasonable description of the heavy quarkonia.

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  • Received 24 April 2017

DOI:https://doi.org/10.1103/PhysRevD.96.016022

© 2017 American Physical Society

Physics Subject Headings (PhySH)

Nuclear PhysicsParticles & Fields

Authors & Affiliations

Yang Li*, Pieter Maris, and James P. Vary

  • Department of Physics and Astronomy, Iowa State University, Ames, Iowa 50011, USA

  • *leeyoung@iastate.edu

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Issue

Vol. 96, Iss. 1 — 1 July 2017

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