Elimination of the Landau pole in QCD with the spontaneously generated anomalous three-gluon interaction
We apply the Bogoliubov compensation principle to QCD. The non-trivial solution of compensation equations for a spontaneous generation of the anomalous three-gluon interaction leads to the determination of parameters of the theory, including behavior of the gauge coupling $\alpha_s(Q^2)$ without the...
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Zusammenfassung: | We apply the Bogoliubov compensation principle to QCD. The non-trivial
solution of compensation equations for a spontaneous generation of the
anomalous three-gluon interaction leads to the determination of parameters of
the theory, including behavior of the gauge coupling $\alpha_s(Q^2)$ without
the Landau singularity, the gluon condensate $V_2\,\simeq\,0.01\,GeV^4$, mass
of the lightest glueball $M_G\,\simeq\,1500\,MeV$ in satisfactory agreement
with the phenomenological knowledge. The results strongly support the
applicability of N.N. Bogoliubov compensation approach to gauge theories of the
Standard Model. |
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DOI: | 10.48550/arxiv.1303.0622 |