Remarks on confinement driven by axion-like particles in Yang-Mills theories
arXiv:0712.2321 · doi:10.1088/1751-8113/41/18/185401
Abstract
Features of screening and confinement are studied for a non-Abelian gauge theory with a mixture of pseudoscalar and scalar coupling, in the case where a constant chromo-electric, or chromo-magnetic, strength expectation value is present. Our discussion is carried out using the gauge-invariant but path-dependent variables formalism. We explicitly show that the static potential profile is the sum of a Yukawa and a linear potential, leading to the confinement of static probe charges. Interestingly, similar results have been obtained in the context of gluodynamics in curved space-time. For only pseudoscalar coupling, the results are radically different.
8 pages, Latex; typos corrected; presentation improved; 2 references added
References in corpus (12)
- Compatibility of CAST search with axion-like interpretation of PVLAS results
- Introduction to AdS-CFT
- Probing Axions with Radiation from Magnetic Stars
- Confinement from spontaneous breaking of scale symmetry
- Static potential from spontaneous breaking of scale symmetry
- Confinement from gluodynamics in curved space-time
- Strong Interaction Dynamics from Spontaneous Symmetry Breaking of Scale Invariance
- Impact of spin-zero particle-photon interactions on light polarization in external magnetic fields
- Resolving the instability of the Savvidy vacuum by dynamical gluon mass
- Continuous Axion Photon Duality and its Consequences
- Properties of noncommutative axionic electrodynamics
- Axion Photon Oscillations From a "Particle-Antiparticle" View Point