Average gluon and quark jet multiplicities at higher orders
arXiv:1305.6017 · doi:10.1016/j.nuclphysb.2013.06.025
Abstract
We develop a new formalism for computing and including both the perturbative and nonperturbative QCD contributions to the scale evolution of average gluon and quark jet multiplicities. The new method is motivated by recent progress in timelike small-x resummation obtained in the MS-bar factorization scheme. We obtain next-to-next-to-leading-logarithmic (NNLL) resummed expressions, which represent generalizations of previous analytic results. Our expressions depend on two nonperturbative parameters with clear and simple physical interpretations. A global fit of these two quantities to all available experimental data sets that are compatible with regard to the jet algorithms demonstrates by its goodness how our results solve a longstandig problem of QCD. We show that the statistical and theoretical uncertainties both do not exceed 5% for scales above 10 GeV. We finally propose to use the jet multiplicity data as a new way to extract the strong-coupling constant. Including all the available theoretical input within our approach, we obtain alpha_s^(5)(M_Z)=0.1199 +- 0.0026 in the MS-bar scheme in an approximation equivalent to next-to-next-to-leading order enhanced by the resummations of ln(x) terms through the NNLL level and of ln(Q^2) terms by the renormalization group, in excellent agreement with the present world average.
33 pages, 11 figures; two more experimental data sets included; accepted for publication in Nucl. Phys. B
References in corpus (12)
- Small x Resummation with Quarks: Deep-Inelastic Scattering
- On Third-Order Timelike Splitting Functions and Top-Mediated Higgs Decay into Hadrons
- On the Next-to-Next-to-Leading Order Evolution of Flavour-Singlet Fragmentation Functions
- Calculating the Charge of a Jet
- Small-x behavior of the structure function F_2 and its slope partial ln(F_2)/partial ln(1/x) for "frozen" and analytic strong-coupling constants
- Resummation of small-x double logarithms in QCD: semi-inclusive electron-positron annihilation
- Gluon- and Quark-Jet Multiplicities with NNNLO and NNLL Accuracy
- Resummed small-x and first-moment evolution of fragmentation functions in perturbative QCD
- Fully double-logarithm-resummed cross sections
- Timelike Single-logarithm-resummed Splitting Functions
- Timelike small x Resummation for Fragmentation Functions
- Timelike structure functions and hadron multiplicities
Cited by in corpus (12)
- The QCD Running Coupling
- Casimir Meets Poisson: Improved Quark/Gluon Discrimination with Counting Observables
- Exploring the Space of Jets with CMS Open Data
- Associated jet and subjet rates in light-quark and gluon jet discrimination
- Fragmentation Functions Beyond Fixed Order Accuracy
- Resummation of small-x double logarithms in QCD: inclusive deep-inelastic scattering
- Application of the rescaling model at small Bjorken values
- Fractal based observables to probe jet substructure of quarks and gluons
- Energy evolution of the moments of the hadron distribution in QCD jets including NNLL resummation and NLO running-coupling corrections
- SUSY, Casimir scaling and probabilistic properties of gluon and quark jets evolution
- SUSY-like relation of the splitting functions in evolution of gluon and quark jet multiplicities
- Average gluon and quark jet multiplicities