Full jet tomography of high-energy nuclear collisions
arXiv:1101.0859 · doi:10.1016/j.nuclphysa.2011.02.018
Abstract
Parton energy loss in the hot QCD medium will manifest itself not only in leading hadron spectra but also in reconstructed jet productions in high-energy nucleus-nucleus collisions. In this paper we report on recent theoretical efforts in studying full jet observables in relativistic heavy-ion collisions by discussing the modifications of jet shapes, inclusive jet cross section and the vector boson accompanied jet production in the presence of the QGP-induced jet quenching.
Plenary talk at Hard Probe 2010, October 10-15, 2010, Eilat, Israel. 8 pages, 6 figures
References in corpus (19)
- Towards Jetography
- Hard Interactions of Quarks and Gluons: a Primer for LHC Physics
- A light-cone wavefunction approach to open heavy flavor dynamics in QCD matter
- Non-perturbative QCD effects in jets at hadron colliders
- Longitudinal double-spin asymmetry and cross section for inclusive jet production in polarized proton collisions at sqrt(s) = 200 GeV
- Non-Abelian energy loss in cold nuclear matter
- A theory of jet shapes and cross sections: from hadrons to nuclei
- Jet tomography of high-energy nucleus-nucleus collisions at next-to-leading order
- Jets in Hadron-Hadron Collisions
- The physics of -tagged jets at the LHC
- Measurement of differential Z/gamma*+jet+X cross sections in proton anti-proton collisions at sqrt{s}=1.96 TeV
- A systematic study of direct photon production in heavy ion collisions
- Inclusive cross section and correlations of fully reconstructed jets in 200 GEV Au+Au and p+p collisions
- Probing medium-induced energy loss with direct jet reconstruction in p+p and Cu+Cu collisions at PHENIX
- Full Jet Reconstruction in Heavy Ion Collisions
- The theory and phenomenology of jets in nuclear collisions
- Correlated theoretical uncertainties for the one-jet inclusive cross section
- Elucidating Jet Energy Loss Using Jets: Prospects from ATLAS
- Jet Observables of Parton Energy Loss in High-Energy Nuclear Collisions