Upper Limits on a Possible Gluon Mass
arXiv:1005.0850 · doi:10.1103/PhysRevD.82.034031
Abstract
We analyze upper limits on a possible gluon mass, . We first discuss various ways to modify quantum chromodynamics to include , including a bare mass, a Higgs mechanism, and dynamical breaking of color SU(3). From an examination of experimental data, we infer an upper limit MeV. We discuss subtleties in interpreting gluon mass limits in view of the fact that at scales below , quantum chromodynamics is strongly coupled, perturbation theory is not reliable, and the physics is not accurately described in terms of the Lagrangian degrees of freedom, including gluons. We also point out a fundamental difference in the behavior of quantum chromodynamics with a nonzero gluon mass and a weakly coupled gauge theory with a gauge boson mass.
10 pages, latex
References in corpus (7)
- The 2009 World Average of
- Scalar Glueball, Scalar Quarkonia, and their Mixing
- Maximum Wavelength of Confined Quarks and Gluons and Properties of Quantum Chromodynamics
- Search for Fermion-Pair Decays $Q\Qbar \to (\t\Wmp)(\tbar\Wpm)$ in Same-Charge Dilepton Events
- On the and as Bound States and Approximate Nambu-Goldstone Bosons
- Gauge-Invariant Quantities Characterizing Gauge Fields in Chromodynamics
- Gluon-Glueball Duality and Glueball Searches
Cited by in corpus (5)
- Generalized non-minimal couplings in Randall-Sundrum scenarios
- Patterns of Dynamical Gauge Symmetry Breaking
- Anomalous chromomagnetic moment of quarks
- A trial to understand the supersymmetry relations through extension of the second quantized fermion and boson fields, either to strings or to odd dimensional spaces
- Quark ACM with topologically generated gluon mass