JEWEL 2.0.0 - Directions for Use
arXiv:1311.0048 · doi:10.1140/epjc/s10052-014-2762-1
Abstract
In this publication the first official release of the JEWEL 2.0.0 code is presented. JEWEL is a Monte Carlo event generator simulating QCD jet evolution in heavy-ion collisions. It treats the interplay of QCD radiation and re-scattering in a medium with fully microscopic dynamics in a consistent perturbative framework with minimal assumptions. After a qualitative introduction into the physics of JEWEL detailed information about the practical aspects of using the code is given.
17 pages, 14 figures, v2: minor changes
References in corpus (5)
- PYTHIA 6.4 Physics and Manual
- Studies of jet quenching using isolated-photon + jet correlations in PbPb and pp collisions at sqrt(s[NN]) = 2.76 TeV
- A Monte Carlo Model for 'Jet Quenching'
- Collision Energy Dependence of Viscous Hydrodynamic Flow in Relativistic Heavy-Ion Collisions
- A local Monte Carlo framework for coherent QCD parton energy loss
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- Observation of medium-induced yield enhancement and acoplanarity broadening of low- jets from measurements in pp and central PbPb collisions at TeV
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- Hard jet substructure in a multistage approach
- Confronting Experimental Data with Heavy-Ion Models: Rivet for Heavy Ions
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- Jet substructure observables for jet quenching in Quark Gluon Plasma: a Machine Learning driven analysis
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- Search for quasi-particle scattering in the quark-gluon plasma with jet splittings in pp and PbPb collisions at TeV
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- Impact of scale, nuclear PDF and temperature variations on the interpretation of medium-modified jet production data from the LHC
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- Deep Learning for the Classification of Quenched Jets
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- Jet momentum reconstruction in the QGP background with machine learning
- Current and future measurements of semi-inclusive hadron+jet distributions with ALICE
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