Does vacuum saturation work for the higher dimensional vacuum condensates in the QCD sum rules?
arXiv:2107.09328 · doi:10.1142/S0217751X21502468
Abstract
In the QCD sum rules for the tetraquark (molecular) states, the higher dimensional vacuum condensates play an important role in extracting the tetraquark masses. We carry out the operator product expansion up to the vacuum condensates of dimension-10 and observe that the vacuum condensates of dimensions , and have the same expressions but opposite signs for the -type and type four-quark currents, which make their influences distinguishable, and they are excellent channels to examine the vacuum saturation approximation. We introduce a parameter to parameterize the derivation from the vacuum saturation or factorization approximation, and choose two sets parameters to examine the influences on the predicted tetraquark masses, which can be confronted to the experimental data in the future. In all the channels, smaller value of the leads to better convergent behavior in the operator product expansion, which favors the vacuum saturation approximation.
16 pages, 23 figures
References in corpus (8)
- The Z(4430) and a New Paradigm for Spin Interactions in Tetraquarks
- Power corrections to alpha_s(M_τ),|V_{us}| and m_s
- Analysis of the as the first radial excitation of the
- Analysis of the mass and width of the as axialvector tetraquark state
- Model-independent observation of exotic contributions to decays
- Analysis of the vector tetraquark states with P-waves between the diquarks and antidiquarks via the QCD sum rules
- Settling the in the charged charmonium-like family
- Assignments of the , , and based on the QCD sum rules