Effective Mass Generation of Off-diagonal Gluons as the Origin of Infrared Abelian Dominance in the Maximally Abelian Gauge in QCD
نویسندگان
چکیده
Kazuhisa Amemiya and Hideo Suganuma Research Center for Nuclear Physics (RCNP), Osaka University Mihogaoka 10-1, Ibaraki, Osaka 567-0047, Japan E-mail: [email protected] We study the origin of the abelian dominance in the maximally abelian (MA) gauge for the long-distance physics in terms of the interaction range mediated by gluons. In the MA gauge, diagonal gluon components behave as neutral gauge fields like photons, and off-diagonal gluon components behave as charged matter fields on the residual abelian gauge symmetry. We study the gluon propagator in the MA gauge with the U(1)3 Landau gauge fixing using the SU(2) lattice QCD with 2.2 ≤ β ≤ 2.4 and 12 × 24. We find the abelian dominance for the gluon propagator in the MA gauge in the infrared region. The off-diagonal charged gluon behaves as a massive vector boson with the effective mass Mch ≃ 0.94 GeV in the region of r ∼ 0.2 fm. The origin of the infrared abelian dominance is physically explained as the generation of the charged gluon mass Mch induced by the MA gauge fixing, and the charged-gluon mass generation predicts general abelian dominances for the long-distance physics in QCD in the MA gauge.
منابع مشابه
Effective Mass Generation of Off-diagonal Gluons and Abelian Dominance in the Maximally Abelian Gauge in QCD
We study the properties of gluons in QCD in the maximally abelian (MA) gauge. In the MA gauge, the off-diagonal gluon behaves as the massive vector boson with the mass Moff ' 1.2 GeV, and therefore the off-diagonal gluon cannot carry the long-range interaction for r M−1 off ' 0.2 fm. The essence of the infrared abelian dominance in the MA gauge is physically explained with the generation of the...
متن کاملOff-diagonal Gluon Mass Generation and Infrared Abelian Dominance in the Maximally Abelian Gauge in Lattice QCD
We study effective mass generation of off-diagonal gluons and infrared abelian dominance in the maximally abelian (MA) gauge. Using the SU(2) lattice QCD, we investigate the propagator and the effective mass of the gluon field in the MA gauge with the U(1)3 Landau gauge fixing. The Monte Carlo simulation is performed on the 123 × 24 lattice with 2.2 ≤ β ≤ 2.4, and also on the 164 and 204 lattic...
متن کاملInfrared Abelian Dominance and Dual Higgs Mechanism in MA Gauge
We study infrared abelian dominance and the dual Higgs mechanism in the maximally abelian (MA) gauge using the lattice QCD Monte Carlo simulation. In the MA gauge, the off-diagonal gluon phase tends to be random, and the off-diagonal gluon A±μ acquires the effective mass as Moff ≃ 1.2 GeV. From the monopole current in the MA gauge, we extract the dual gluon field Bμ and estimate the dual gluon ...
متن کاملQuark Confinement Physics from Quantum Chromodynamics
We show the construction of the dual superconducting theory for the confinement mechanism from QCD in the maximally abelian (MA) gauge using the lattice QCDMonte Carlo simulation. We find that essence of infrared abelian dominance is naturally understood with the off-diagonal gluon mass moff ≃ 1.2GeV induced by the MA gauge fixing. In the MA gauge, the off-diagonal gluon amplitude is forced to ...
متن کاملAbelianization of QCD in the Maximally Abelian Gauge and the Nambu-’t Hooft Picture for Color Confinement
We study the Nambu-’t Hooft picture for color confinement in terms of the abelianization of QCD and monopole condensation in the maximally abelian (MA) gauge. In the MA gauge in the Euclidean metric, the off-diagonal gluon amplitude is strongly suppressed, and then the off-diagonal gluon phase shows strong randomness, which leads to rapid reduction of the off-diagonal gluon correlation. In SU(2...
متن کامل