Improved XTZ masses and mass ratios from Laplace Sum Rules at NLO
arXiv:2201.13449 · doi:10.1016/j.nuclphysa.2022.122451
Abstract
We present improved estimates of the couplings, masses and mass ratios of the Z_Q,X_Q and T_{QQqq} states using QCD Laplace sum rules (LSR), their ratios R and double ratios DRSR within stability criteria, where the NLO factorized PT QCD corrections are included which is important for giving a meaning on the running MS heavy quark mass used in the analysis. We show that combined R and DRSR can provide more precise results. First, we conclude that the observed X_c(3872) and Z_c(3900) are tetramoles states (superposition of quasi-degenerated molecule and a tetraquark states having (almost) the same coupling to the currents) with the predicted masses: M_{T_{X_c}}=3876(44) MeV and M_{ T_{Z_c}}=3900(42) MeV. In the 2nd part, we focus on the analysis of the four-quark nature of different T_{QQqq'} 1^+ and 0^+ states within the 3_c3_c interpolating currents. The final results are summarized in Table 7. Combined R and DRSR calibrated to the observed X_c(3872) lead to a precise prediction of e.g. M_{T_{cc}^{1^+}}=3886(6) MeV. In a similar way, the DRSR for M_{T_{cc}^{0^+}}/M_{T_{cc}^{1^+}} calibrated to M_{T_{cc}^{1^+}} gives M_{T_{cc}^{0^+}}= 3883(3) MeV. The SU3 breaking ratios M_{T_{ccss}^{0^+}}/ M_{T_{cc}^{0^+}} lead to the improved mass predictions: M_{T_{ccss}^{0^+}}=3988(12) MeV. In the 3rd part, the analysis is extended to the beauty mesons, where we find the tetramole masses : M_{ T_{Z_b}}=10579(99) MeV and M_{X_b}=10545(131) MeV. We also observe that the T^{1^+,0^+}_{bbqq'} states are (almost) stable (within the errors) against strong interactions. In the 4th part, we (critically) review and correct some recent LSR estimates of the T^{1^+,0^+}_{QQqq'} masses. Our results from LSR+DRSR are confronted with the ones from some other approaches (lattices and quark models) in Fig. 25.
46 pages, 27 Figures, 10 Tables. Reference corrected
References in corpus (26)
- Pentaquark and Tetraquark states
- Observation of structure in the -pair mass spectrum
- Heavy-quark symmetry implies stable heavy tetraquark mesons
- Baryons with two heavy quarks: Masses, production, decays, and detection
- A Theory of Scalar Mesons
- Can the X(3872) be a 1^{++} four-quark state?
- QCD sum rules study of mesons
- Lattice QCD investigation of a doubly-bottom tetraquark with quantum numbers
- QCD Sum Rules for the X(3872) as a mixed molecule-charmoniun state
- Power corrections to alpha_s(M_τ),|V_{us}| and m_s
- Four-quark exotic mesons
- Doubly-hidden scalar heavy molecules and tetraquarks states from QCD at NLO
- Amplitude analysis of e+e- => Y(nS)pi+pi- at sqrt(s)=10.865 GeV
- Stable double-heavy tetraquarks: spectrum and structure
- Glueball nature of the sigma/f_0(600) from pi-pi and gamma-gamma scatterings
- Spectroscopy, lifetime and decay modes of the tetraquark
- (2900) and invariant mass from QCD Laplace sum rules at NLO
- Z_c -like spectra from QCD Laplace sum rules at NLO
- Construction of tetraquark states on lattice with NRQCD bottom and HISQ up/down quarks
- On the nature of the X(3872) from QCD
- sigma and f_0(980) substructures from gamma-gamma to pi-pi, J/psi, phi radiative and D_s semi-leptonic decays
- Di-Gluonium Sum Rules, I = 0 Scalar Mesons and Conformal Anomaly
- from @N2LO
- Slope of the topological charge, proton spin and pseudoscalar di-gluonia spectra
- The New Charm-Strange Resonances in the D^- K^+ Channel
- Doubly hidden molecules and tetraquarks states from QCD at NLO
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- An updated review of the new hadron states
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- Exploring the magnetic dipole moments of and states in the framework of QCD light-cone sum rules
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- Hunting for the prospective family based on the diquark-antidiquark configuration
- and systems with operator mixing at NLO in QCD sum rules
- Tests of the Z_c-like Laplace Sum Rule (LSR) results using FESR at NLO
- Hadronic molecule model for the doubly charmed state