Mass spectra of the heavy baryons Lambda_Q and Sigma_Q^(*) from QCD sum rules
arXiv:0805.0479 · doi:10.1103/PhysRevD.77.094002
Abstract
We use QCD sum rule approach to calculate the masses of the ground-state Lambda_Q and Sigma_Q^(*) baryons. Contributions of the operators up to dimension six are included in operator product expansion. The resulting heavy baryonic masses from the calculations are m_{Lambda_b}=5.69 +/- 0.13 GeV, and m_{Lambda_c}=2.31 +/- 0.19 GeV for Lambda_Q; m_{Sigma_b}=5.73 +/- 0.21 GeV, m_{Sigma_b^*}=5.81 +/- 0.19 GeV, m_{Sigma_c}=2.40 +/- 0.31 GeV and m_{Sigma_c^*}=2.56 +/- 0.24 GeV for Sigma_Q^(*), respectively, which are in good agreement with the experimental values.
RevTeX4, 8 pages with 14 eps figures
References in corpus (5)
Cited by in corpus (15)
- Heavy baryon spectroscopy in QCD
- Deciphering triply heavy baryons in terms of QCD sum rules
- molecular states
- Heavy Flavour Physics and CP Violation at LHCb: a Ten-Year Review
- Identification of newly observed singly charmed baryons using relativistic flux tube model
- Study of as a molecular state
- The , and baryons
- Toward establishing the low-lying -wave excited baryon states
- Tree Level Semileptonic to Nucleon Decay in Light Cone QCD Sum Rules
- QCD sum rules study of X(4350)
- Properties of spin-1/2 heavy baryons at nonzero temperature
- Spectroscopic properties of -wave singly bottom baryons
- A Primary Study of Heavy Baryons Lambda_Q, Xi_Q, Sigma_Q and Omega_Q
- Baryons and baryoniums in the perspective of QCD sum rules
- Radiative decay