Restriction on the strong coupling constant in the IR region from the 1D-1P splitting in bottomonium
- 30 July 2004
- journal article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 70 (1)
- https://doi.org/10.1103/physrevd.70.016007
Abstract
The $b\bar b$ spectrum is calculated with the use of a relativistic Hamiltonian where the gluon-exchange between a quark and an antiquark is taken as in background perturbation theory. We observed that the splittings $\Delta_1= \Upsilon({\rm 1D})-\chi_b({\rm 1P})$ and other splittings are very sensitive to the QCD constant $\Lambda_V(n_f)$ which occurs in the Vector scheme, and good agreement with the experimental data is obtained for $\Lambda_V(2$-loop, $n_f=5)= 325\pm 10$ MeV which corresponds to the conventional $\Lambda_{\bar{MS}} (2-$loop, $n_f=5)= 238\pm 7$ MeV, $\alpha_s(2-$loop, $M_Z)=0.1189\pm 0.0005,$ and a large freezing value of the background coupling: $\alpha_{\rm crit} (2$-loop, $q^2=0)=\alpha_{\rm crit} (2$-loop, $r\to \infty)=0.58\pm 0.02$. If the asymptotic freedom behavior of the coupling is neglected and an effective freezing coupling $\alpha_{\rm static}=const$ is introduced, as in the Cornell potential, then precise agreement with $\Delta_1({\rm exp})$ and $\Delta_2({\rm exp})$ can be reached for the rather large value $\alpha_{\rm static} =0.43\pm 0.02$. We predict a value for the mass M(2D) = 10451\pm2 MeV.Comment: 17 pages, no figures, 6 table
Keywords
All Related Versions
This publication has 33 references indexed in Scilit:
- Prospects for detection ofviaPhysical Review D, 2003
- -Meson Gateways to Missing Charmonium LevelsPhysical Review Letters, 2002
- Production of theD-wavestatesPhysical Review D, 2001
- QCD spectrum with three quark flavorsPhysical Review D, 2001
- Static quark potential in three flavor QCDPhysical Review D, 2000
- Determination offrom the charmonium fine structurePhysical Review D, 1999
- Mesons with beauty and charm: SpectroscopyPhysical Review D, 1994
- Heavy-Quark SystemsAnnual Review of Nuclear and Particle Science, 1987
- Comparing the Schrödinger and spinless Salpeter equations for heavy-quark bound statesPhysical Review D, 1986
- Charmonium: Comparison with experimentPhysical Review D, 1980