1(--) and 0(++) heavy four-quark and molecule states in QCD


Autoria(s): Albuquerque, Raphael Moreira de; Fanomezana, E.; Narison, S.; Rabemananjara, A.
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

06/11/2013

06/11/2013

2012

Resumo

We estimate the masses of the 1(--) heavy four-quark and molecule states by combining exponential Laplace (LSR) and finite energy (FESR) sum rules known perturbatively to lowest order (LO) in alpha(s) but including non-perturbative terms up to the complete dimension-six condensate contributions. This approach allows to fix more precisely the value of the QCD continuum threshold (often taken ad hoc) at which the optimal result is extracted. We use double ratio of sum rules (DRSR) for determining the SU(3) breakings terms. We also study the effects of the heavy quark mass definitions on these LO results. The SU(3) mass-splittings of about (50-110) MeV and the ones of about (250-300) MeV between the lowest ground states and their 1st radial excitations are (almost) heavy-flavor independent. The mass predictions summarized in Table 4 are compared with the ones in the literature (when available) and with the three Y-c(4260, 4360, 4660) and Y-b(10890) 1(--) experimental candidates. We conclude (to this order approximation) that the lowest observed state cannot be a pure 1(--) four-quark nor a pure molecule but may result from their mixings. We extend the above analyzes to the 0(++) four-quark and molecule states which are about (0.5-1) GeV heavier than the corresponding 1(--) states, while the splittings between the 0(++) lowest ground state and the 1st radial excitation is about (300-500) MeV. We complete the analysis by estimating the decay constants of the 1(--) and 0(++) four-quark states which are tiny and which exhibit a 1/M-Q behavior. Our predictions can be further tested using some alternative non-perturbative approaches or/and at LHCb and some other hadron factories. (c) 2012 Elsevier B.V. All rights reserved.

CNRSIN2P3 within the project NonPerturbative QCD

CNRS-IN2P3 within the project Non-Perturbative QCD

CNRSIN2P3 within the project Hadron Physics

CNRS-IN2P3 within the project Hadron Physics

CNRS-FAPESP program

CNRSFAPESP program

CNPq-Brazil

CNPq (Brazil)

Abdus Salam ICTPTrieste (Italy)

Abdus Salam ICTP-Trieste (Italy)

Identificador

PHYSICS LETTERS B, AMSTERDAM, v. 715, n. 41334, supl. 1, Part 1, pp. 129-141, AUG 29, 2012

0370-2693

http://www.producao.usp.br/handle/BDPI/42509

10.1016/j.physletb.2012.07.024

http://dx.doi.org/10.1016/j.physletb.2012.07.024

Idioma(s)

eng

Publicador

ELSEVIER SCIENCE BV

AMSTERDAM

Relação

PHYSICS LETTERS B

Direitos

closedAccess

Copyright ELSEVIER SCIENCE BV

Palavras-Chave #QCD SPECTRAL SUM RULES #FOUR-QUARK AND MOLECULE STATES #HEAVY QUARKONIA #LIGHT-QUARK MASSES #CHIRAL-SYMMETRY-BREAKING #SPECTRAL SUM-RULES #QUANTUM CHROMODYNAMICS #POWER CORRECTIONS #GLUON CONDENSATE #PI-PI #RESONANCE PHYSICS #DECAY CONSTANTS #BARYON MASSES #PHYSICS, MULTIDISCIPLINARY
Tipo

article

original article

publishedVersion