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The angular structure of jet quenching within a hybrid strong/weak coupling model
Name
1612.09238.pdf
Description
Accepted version
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469.01 KB
Format
Adobe PDF
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ecc56e514408843c57c151bace8b2f13
Author(s) • • • •
Casalderrey-Solana, Jorge
Gulhan, Doga Can
Milhano, José Guilherme
Pablos, Daniel
Rajagopal, Krishna
Date Issued
2017
Journal
Nuclear and Particle Physics Proceedings
Publisher
Elsevier BV
Version
Author's final manuscript
Abstract
© 2017 Elsevier B.V. Building upon the hybrid strong/weak coupling model for jet quenching, we incorporate and study the effects of transverse momentum broadening and medium response of the plasma to jets on a variety of observables. For inclusive jet observables, we find little sensitivity to the strength of broadening. To constrain those dynamics, we propose new observables constructed from ratios of differential jet shapes, in which particles are binned in momentum, which are sensitive to the in-medium broadening parameter. We also investigate the effect of the back-reaction of the medium on the angular structure of jets as reconstructed with different cone radii R. Finally we provide results for the so called “missing-pt” finding a qualitative agreement between our model calculations and data in many respects, although a quantitative agreement is beyond our simplified treatment of the hadrons originating from the hydrodynamic wake.
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Creative Commons Attribution-NonCommercial-NoDerivs License
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DOI of Published Version
10.1016/J.NUCLPHYSBPS.2017.05.083