Renormalized quark-antiquark Hamiltonian induced by a gluon mass ansatz in heavy-flavor QCD
arXiv:1705.07629 · doi:10.1016/j.physletb.2017.08.018
Abstract
In response to the growing need for theoretical tools that can be used in QCD to describe and understand the dynamics of gluons in hadrons in the Minkowski space-time, the renormalization group procedure for effective particles (RGPEP) is shown in the simplest available context of heavy quarkonia to exhibit a welcome degree of universality in the first approximation it yields once one assumes that beyond perturbation theory gluons obtain effective mass. Namely, in the second-order terms, the Coulomb potential with Breit-Fermi spin couplings in the effective quark-antiquark component of a heavy quarkonium, is corrected in one-flavor QCD by a spin-independent harmonic oscillator term that does not depend on the assumed effective gluon mass or the choice of the RGPEP generator. The new generator we use here is much simpler than the ones used before and has the advantage of being suitable for studies of the effective gluon dynamics at higher orders than the second and beyond the perturbative expansion.
8 pages, 2 figures, journal version
References in corpus (16)
- Heavy quarkonium: progress, puzzles, and opportunities
- Gluon and ghost propagators in the Landau gauge: Deriving lattice results from Schwinger-Dyson equations
- Pinch Technique: Theory and Applications
- Non-perturbative comparison of QCD effective charges
- Quarkonium as relativistic bound state on the light front
- Heavy quarkonium hybrids from Coulomb gauge QCD
- Spectra of heavy quarkonia in a Bethe-Salpeter-equation approach
- Effective confining potentials for QCD
- Spectra of heavy mesons in the Bethe-Salpeter approach
- High Gluon Densities in Heavy Ions Collisions
- Feasibility study for the measurement of TDAs at PANDA in
- Quarks in Coulomb gauge perturbation theory
- Quarkonium States As Arbiters of Exoticity
- Covariant Spectator Theory of heavy-light and heavy mesons and the predictive power of covariant interaction kernels
- Boost-invariant Hamiltonian approach to heavy quarkonia
- Effective particles in quantum field theory
Cited by in corpus (19)
- 50 Years of Quantum Chromodynamics
- Gauge Sector Dynamics in QCD
- Evidence of ghost suppression in gluon mass dynamics
- Emergence of mass in the gauge sector of QCD
- Coupled dynamics in gluon mass generation and the impact of the three-gluon vertex
- Approximate Hamiltonian for baryons in heavy-flavor QCD
- Exploring smoking-gun signals of the Schwinger mechanism in QCD
- Gluon mass scale through nonlinearities and vertex interplay
- Light-front holography with chiral symmetry breaking
- All-charm tetraquark in front form dynamics
- Gluon mass scale through the Schwinger mechanism
- Longitudinal dynamics for mesons on the light cone
- Stress out of charmonia
- Bottomonium spectrum with a Dirac potential model in the momentum space
- Baryon masses estimate in heavy flavor QCD
- The Ridge Effect, Azimuthal Correlations, and other Novel Features of Gluonic String Collisions in High Energy Photon-Mediated Reactions
- Nucleon Structure from Basis Light-Front Quantization : Status and Prospects
- Asymptotic freedom using a gluon mass as a regulator
- scattering from a similarity renormalization group perspective