English

Gluon-Photon mixing in dense QCD

High Energy Physics - Phenomenology 2007-05-23 v3

Abstract

At high baryonic density with the formation of a diquark condensate Δ0\Delta \neq 0, the QCD color symmetry is spontaneously broken. Being massive by the Anderson-Higgs mechanism, gluon and photon should mix together within two linear combinations due to the color non-conservation. Consequently a gluon G~\widetilde{G} could decay into an ee+e^- e^+ pair via its photon component. With a low invariant mass (about a few ten MeV) and an extremely narrow width peaking above the continuum background, the purely leptonic decay of a strongly-interacting gluon G~e+e+\widetilde{G} \to e^- + e^+ constitutes a very distinctive signature of the color superconductivity phase. By a similar scenario of gluon-ZZ mixing, another "missing-energy" decay into invisible neutrinos G~ν+νˉ\widetilde{G} \to \nu +\bar{\nu} could arise, its amplitude is however (Δ/MZ)2(\Delta/M_Z)^2 power-suppressed.

Keywords

Cite

@article{arxiv.hep-ph/0101332,
  title  = {Gluon-Photon mixing in dense QCD},
  author = {Van Hieu Nguyen and Xuan-Yem Pham},
  journal= {arXiv preprint arXiv:hep-ph/0101332},
  year   = {2007}
}

Comments

LaTeX, 8 pages + 1 postscript figure

R2 v1 2026-07-22T13:31:59.108Z