The contribution of medium-modified color flow to jet quenching
arXiv:1204.4342 · doi:10.1007/JHEP07(2012)144
Abstract
Multiple interactions between parton showers and the surrounding QCD matter are expected to underlie the strong medium-modifications of jet observables in ultra-relativistic heavy ion collisions at RHIC and at the LHC. Here, we note that such jet-medium interactions alter generically and characteristically the color correlations in the parton shower. We characterize these effects in a color-differential calculation of the medium-induced gluon radiation spectrum to first and second order in opacity. By interfacing simple branching histories of medium-modified color flow with the Lund hadronization model, we analyze how the medium modification of color correlations can affect the distribution of hadronic fragments in jets. Importantly, we observe that jet-medium interactions give rise to the medium-induced color decoherence of gluons from the parton shower. Since hadronization respects color flow and since each color singlet in a parton shower is hadronized separately, this medium-induced color decoherence leaves characteristic signatures in the jet fragmentation pattern. In particular, it can contribute to the quenching of leading hadron spectra. Moreover, it can increase strongly the yield of soft hadronic fragments from a jet, while the distribution of more energetic hadrons follows naturally the shape of a vacuum-like fragmentation pattern of lower total energy.
References in corpus (9)
- PYTHIA 6.4 Physics and Manual
- Study of high-pT charged particle suppression in PbPb compared to pp collisions at sqrt(sNN)=2.76 TeV
- The theory and phenomenology of perturbative QCD based jet quenching
- Jet momentum dependence of jet quenching in PbPb collisions at sqrt(sNN)=2.76 TeV
- Antiangular Ordering of Gluon Radiation in QCD Media
- A Monte Carlo Model for 'Jet Quenching'
- The radiation pattern of a QCD antenna in a dilute medium
- Jet hadrochemistry as a characteristics of jet quenching
- Decoherence and energy loss in QCD cascades in nuclear collisions
Cited by in corpus (11)
- A Hybrid Strong/Weak Coupling Approach to Jet Quenching
- A perturbative framework for jet quenching
- Angular Structure of Jet Quenching Within a Hybrid Strong/Weak Coupling Model
- Picturing perturbative parton cascades in QCD matter
- Predictions for Boson-Jet Observables and Fragmentation Function Ratios from a Hybrid Strong/Weak Coupling Model for Jet Quenching
- Nuclear modification of high-p_T hadron spectra in p+A collisions at LHC
- Color randomization of fast gluon-gluon pairs in the quark-gluon plasma
- Jet fragmentation transverse momentum distributions in pp and p-Pb collisions at = 5.02 TeV
- Understanding partonic energy loss from measured light charged particles and jets in PbPb collisions at LHC energies
- Jet correlations - opportunities and pitfalls
- Recent progress on the understanding of the medium-induced jet evolution and energy loss in pQCD