NLO effects for Baryons in QCD Sum Rules
arXiv:2104.07384 · doi:10.1088/1674-1137/ac0b3c
Abstract
We study the triply heavy baryons in the QCD sum rules by performing the first calculation of the next-to-leading order (NLO) contribution to the perturbative QCD part of the correlation functions. Compared with the leading order (LO) result, the NLO contribution is found to be very important to the . This is because the NLO not only results in a large correction, but also reduces the parameter dependence, making the Borel platform more distinct, especially for the in the scheme, where the platform appears only at NLO but not at LO. Particularly, owing to the inclusion of the NLO contribution, the renormalization schemes ( and On-Shell) dependence and the scale dependence are significantly reduced. Consequently, after including the NLO contribution to the perturbative part in the QCD sum rules, the masses are estimated to be GeV for and GeV for , where the results are obtained at with errors including those from the variation of the renormalization scale in the range . A careful study of the dependence in a wide range is further performed, which shows that the LO results are very sensitive to the choice of whereas the NLO results are considerably better. In addition to the result, a more stable value, (4.75-4.80) GeV, for the mass is found in the range of , which should be viewed as a more relevant prediction in our NLO approach because of dependence.
An auxiliary file added showing calculations of NLO amplitudes; More discussions added on renormalization scale dependence. 12 pages, 6 figures, 5 tables. to be published in Chinese Physics C
References in corpus (19)
- Pentaquark and Tetraquark states
- Observation of the doubly charmed baryon
- Heavy Baryons in a Quark Model
- Charmed bottom baryon spectroscopy from lattice QCD
- Baryon spectrum with twisted mass fermions
- Ground-state triply and doubly heavy baryons in a relativistic three-quark model
- Charmed baryons in a relativistic quark model
- Spectrum of light- and heavy-baryons
- Doubly-hidden scalar heavy molecules and tetraquarks states from QCD at NLO
- Deciphering triply heavy baryons in terms of QCD sum rules
- Masses of Light and Heavy Mesons and Baryons: A Unified Picture
- Properties of triply heavy spin--3/2 baryons
- Magnetic Moments of Baryons containing all heavy quarks in Quark-Diquark Model
- Constituent-quark model description of triply heavy-baryon nonperturbative lattice QCD data
- Production in High Energy Nuclear Collisions
- Analysis of the triply-heavy baryon states with the QCD sum rules
- SVZ sum rules : 30 + 1 years later
- Heavy baryon properties with NLO accuracy in perturbative QCD
- Next-to-Leading Order perturbative QCD corrections to baryon correlators in matter
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- Precise study of triply charmed baryons
- Magnetic moments of spin--1/2 triply-heavy baryons: A study of Light-cone QCD and Quark-diquark model
- Unraveling as a pseudoscalar tetraquark state
- Possible bound states in the triple- and triple- systems
- Spectroscopy and Radiative Decays of and Baryons in a Quark-Diquark Model
- Strange pentaquark molecules in QCD sum rules
- Study of the and dibaryons in QCD Sum Rules