The decay properties of two- and three- gluon glueballs
Wei-Han Tan, Hua-Xing Chen, Ding-Kun Lian, Wen-Ying Liu
Abstract
We previously studied the decay properties of two- and three-gluon glueballs using the Fierz rearrangement method and obtained their relative branching ratios in Ref.~Tan:2026uue. In this work, we extend and develop this analysis by providing a more complete treatment of two-gluon glueball decays and by considering the tensor and pseudotensor states with JPC=2++ and 2-+. We also perform an independent QCD sum rule analysis of the 0++ two-gluon glueball decay. The consistency between the two approaches provides a useful check of the Fierz analysis. Our results support a sizable gluon component in the f0(1710) and favor the 0-+ glueball interpretation of the η(2370). For the tensor glueball, the vector--vector (VV) decay channels, especially K*(892)K*(892), are found to be favorable for experimental searches. We also study three-gluon glueballs with JPC=0++ and 1+- and identify several potentially favorable three-meson decay channels, including ππω and K Kϕ. These results provide possible guidance for future experimental searches for glueball states.
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