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Title: Angular structure of jet quenching within a hybrid strong/weak coupling model

Abstract

Within the context of a hybrid strong/weak coupling model of jet quenching, we study the modification of the angular distribution of the energy within jets in heavy ion collisions, as partons within jet showers lose energy and get kicked as they traverse the strongly coupled plasma produced in the collision. To describe the dynamics transverse to the jet axis, we add the effects of transverse momentum broadening into our hybrid construction, introducing a parameter K≡qˆ/T3K≡q^/T3 that governs its magnitude. We show that, because of the quenching of the energy of partons within a jet, even when K ≠ 0 the jets that survive with some specified energy in the final state are narrower than jets with that energy in proton-proton collisions. For this reason, many standard observables are rather insensitive to K. We also propose a new differential jet shape ratio observable in which the effects of transverse momentum broadening are apparent. We also analyze the response of the medium to the passage of the jet through it, noting that the momentum lost by the jet appears as the momentum of a wake in the medium. After freezeout this wake becomes soft particles with a broad angular distribution but withmore » net momentum in the jet direction, meaning that the wake contributes to what is reconstructed as a jet. Thus, this effect must be included in any description of the angular structure of the soft component of a jet. We show that the particles coming from the response of the medium to the momentum and energy deposited in it leads to a correlation between the momentum of soft particles well separated from the jet in angle with the direction of the jet momentum, and find qualitative but not quantitative agreement with experimental data on observables designed to extract such a correlation. Generally, by confronting the results that we obtain upon introducing transverse momentum broadening and the response of the medium to the jet with available jet data, we highlight the importance of these processes for understanding the internal, soft, angular structure of high energy jets.« less

Authors:
 [1];  [2];  [3];  [2];  [4]
  1. Univ. of Oxford (United Kingdom). Rudolf Peierls Centre for Theoretical Physics
  2. Univ. of Barcelona (Spain). Dept. of Quantum Astrophysics and Inst. of Cosmological Sciences (ICC)
  3. Univ. of Lisbon (Portugal). CENTRA and Superior Inst. of Technology; Laboratory of Instrumentation and Experimental Particles Physics, Lisbon (Portugal); European Organization for Nuclear Research (CERN), Geneva (Switzerland). Theoretical Physics Dept.
  4. Massachusetts Inst. of Technology (MIT), Cambridge, MA (United States). Center for Theoretical Physics
Publication Date:
Research Org.:
Massachusetts Inst. of Technology (MIT), Cambridge, MA (United States)
Sponsoring Org.:
USDOE Office of Science (SC)
OSTI Identifier:
1368399
Grant/Contract Number:  
SC0011090
Resource Type:
Accepted Manuscript
Journal Name:
Journal of High Energy Physics (Online)
Additional Journal Information:
Journal Name: Journal of High Energy Physics (Online); Journal Volume: 2017; Journal Issue: 3; Journal ID: ISSN 1029-8479
Publisher:
Springer Berlin
Country of Publication:
United States
Language:
English
Subject:
74 ATOMIC AND MOLECULAR PHYSICS; Heavy Ion Phenomenology; Jets

Citation Formats

Casalderrey-Solana, Jorge, Gulhan, Doga Can, Milhano, José Guilherme, Pablos, Daniel, and Rajagopal, Krishna. Angular structure of jet quenching within a hybrid strong/weak coupling model. United States: N. p., 2017. Web. doi:10.1007/JHEP03(2017)135.
Casalderrey-Solana, Jorge, Gulhan, Doga Can, Milhano, José Guilherme, Pablos, Daniel, & Rajagopal, Krishna. Angular structure of jet quenching within a hybrid strong/weak coupling model. United States. https://doi.org/10.1007/JHEP03(2017)135
Casalderrey-Solana, Jorge, Gulhan, Doga Can, Milhano, José Guilherme, Pablos, Daniel, and Rajagopal, Krishna. Mon . "Angular structure of jet quenching within a hybrid strong/weak coupling model". United States. https://doi.org/10.1007/JHEP03(2017)135. https://www.osti.gov/servlets/purl/1368399.
@article{osti_1368399,
title = {Angular structure of jet quenching within a hybrid strong/weak coupling model},
author = {Casalderrey-Solana, Jorge and Gulhan, Doga Can and Milhano, José Guilherme and Pablos, Daniel and Rajagopal, Krishna},
abstractNote = {Within the context of a hybrid strong/weak coupling model of jet quenching, we study the modification of the angular distribution of the energy within jets in heavy ion collisions, as partons within jet showers lose energy and get kicked as they traverse the strongly coupled plasma produced in the collision. To describe the dynamics transverse to the jet axis, we add the effects of transverse momentum broadening into our hybrid construction, introducing a parameter K≡qˆ/T3K≡q^/T3 that governs its magnitude. We show that, because of the quenching of the energy of partons within a jet, even when K ≠ 0 the jets that survive with some specified energy in the final state are narrower than jets with that energy in proton-proton collisions. For this reason, many standard observables are rather insensitive to K. We also propose a new differential jet shape ratio observable in which the effects of transverse momentum broadening are apparent. We also analyze the response of the medium to the passage of the jet through it, noting that the momentum lost by the jet appears as the momentum of a wake in the medium. After freezeout this wake becomes soft particles with a broad angular distribution but with net momentum in the jet direction, meaning that the wake contributes to what is reconstructed as a jet. Thus, this effect must be included in any description of the angular structure of the soft component of a jet. We show that the particles coming from the response of the medium to the momentum and energy deposited in it leads to a correlation between the momentum of soft particles well separated from the jet in angle with the direction of the jet momentum, and find qualitative but not quantitative agreement with experimental data on observables designed to extract such a correlation. Generally, by confronting the results that we obtain upon introducing transverse momentum broadening and the response of the medium to the jet with available jet data, we highlight the importance of these processes for understanding the internal, soft, angular structure of high energy jets.},
doi = {10.1007/JHEP03(2017)135},
journal = {Journal of High Energy Physics (Online)},
number = 3,
volume = 2017,
place = {United States},
year = {Mon Mar 27 00:00:00 EDT 2017},
month = {Mon Mar 27 00:00:00 EDT 2017}
}

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Measurements of jet quenching with semi-inclusive charged jet distributions in Au + Au collisions at <mml:math altimg="si1.gif" overflow="scroll" xmlns:xocs="http://www.elsevier.com/xml/xocs/dtd" xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns="http://www.elsevier.com/xml/ja/dtd" xmlns:ja="http://www.elsevier.com/xml/ja/dtd" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:tb="http://www.elsevier.com/xml/common/table/dtd" xmlns:sb="http://www.elsevier.com/xml/common/struct-bib/dtd" xmlns:ce="http://www.elsevier.com/xml/common/dtd" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:cals="http://www.elsevier.com/xml/common/cals/dtd" xmlns:sa="http://www.elsevier.com/xml/common/struct-aff/dtd"><mml:msqrt><mml:msub><mml:mrow><mml:mi>s</mml:mi></mml:mrow><mml:mrow><mml:mi mathvariant="normal">NN</mml:mi></mml:mrow></mml:msub></mml:msqrt><mml:mo>=</mml:mo><mml:mn>200</mml:mn><mml:mtext> GeV</mml:mtext></mml:math>
journal, December 2016


Towards the understanding of jet shapes and cross sections in heavy ion collisions using soft-collinear effective theory
journal, May 2016


Pileup subtraction using jet areas
journal, January 2008


Light-heavy-ion collisions: a window into pre-equilibrium QCD dynamics?
journal, July 2015


Jet Tomography of High-Energy Nucleus-Nucleus Collisions at Next-to-Leading Order
journal, March 2010


Radial and elliptic flow at RHIC: further predictions
journal, March 2001


JEWEL 2.0.0: directions for use
journal, February 2014


Hydrodynamics and jets in dialogue
journal, December 2014


Heavy ions and string theory
journal, March 2014

  • DeWolfe, Oliver; Gubser, Steven S.; Rosen, Christopher
  • Progress in Particle and Nuclear Physics, Vol. 75
  • DOI: 10.1016/j.ppnp.2013.11.001

Jet evolution in the 𝒩 = 4 SYM plasma at strong coupling
journal, May 2008


The iEBE-VISHNU code package for relativistic heavy-ion collisions
journal, February 2016


From Full Stopping to Transparency in a Holographic Model of Heavy Ion Collisions
journal, October 2013


Measurement of the pseudorapidity and transverse momentum dependence of the elliptic flow of charged particles in lead–lead collisions at <mml:math altimg="si1.gif" overflow="scroll" xmlns:xocs="http://www.elsevier.com/xml/xocs/dtd" xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns="http://www.elsevier.com/xml/ja/dtd" xmlns:ja="http://www.elsevier.com/xml/ja/dtd" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:tb="http://www.elsevier.com/xml/common/table/dtd" xmlns:sb="http://www.elsevier.com/xml/common/struct-bib/dtd" xmlns:ce="http://www.elsevier.com/xml/common/dtd" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:cals="http://www.elsevier.com/xml/common/cals/dtd"><mml:msqrt><mml:msub><mml:mi>s</mml:mi><mml:mi mathvariant="normal">NN</mml:mi></mml:msub></mml:msqrt><mml:mo>=</mml:mo><mml:mn>2.76</mml:mn><mml:mtext> </mml:mtext><mml:mtext>TeV</mml:mtext></mml:math> with the ATLAS detector
journal, February 2012


Jet reconstruction in heavy ion collisions
journal, January 2011


Evidence for collectivity in pp collisions at the LHC
text, January 2016


Conical Flow induced by Quenched QCD Jets
journal, August 2006


<mml:math altimg="si1.gif" overflow="scroll" xmlns:xocs="http://www.elsevier.com/xml/xocs/dtd" xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns="http://www.elsevier.com/xml/ja/dtd" xmlns:ja="http://www.elsevier.com/xml/ja/dtd" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:tb="http://www.elsevier.com/xml/common/table/dtd" xmlns:sb="http://www.elsevier.com/xml/common/struct-bib/dtd" xmlns:ce="http://www.elsevier.com/xml/common/dtd" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:cals="http://www.elsevier.com/xml/common/cals/dtd"><mml:msub><mml:mi mathvariant="double-struck">Z</mml:mi><mml:mn>2</mml:mn></mml:msub></mml:math> symmetry prediction for the leptonic Dirac CP phase
journal, August 2011


Thermalization of mini-jets in a quark-gluon plasma
journal, January 2016


Evidence for collectivity in pp collisions at the LHC
text, January 2017

  • Khachatryan, Vardan; Sirunyan, Albert M.; Tumasyan, Armen
  • Deutsches Elektronen-Synchrotron, DESY, Hamburg
  • DOI: 10.3204/pubdb-2016-06639

Lp approximation by multivariate Baskakov–Kantorovich operators
journal, December 2008

  • Cao, Feilong; Ding, Chunmei
  • Journal of Mathematical Analysis and Applications, Vol. 348, Issue 2
  • DOI: 10.1016/j.jmaa.2008.05.049

Jet (de)coherence in Pb–Pb collisions at the LHC
journal, November 2014


Evidence for collectivity in pp collisions at the LHC
text, January 2017


N=2 moonshine
journal, October 2012


Evidence for collective multiparticle correlations in $p-Pb$ collisions
text, January 2015

  • Collaboration, Cms; Khachatryan, V.; Sirunyan, A. M.
  • American Physical Society
  • DOI: 10.5167/uzh-121374

Thermalization of mini-jets in a quark–gluon plasma
journal, December 2016


N=8 non-linear supersymmetric mechanics
journal, February 2006


Observation of long-range, near-side angular correlations in pPb collisions at the LHC
text, January 2013


Evidence for Collective Multiparticle Correlations in p-Pb Collisions
text, January 2015


The anti-k_t jet clustering algorithm
text, January 2008


Universality of the Diffusion Wake from Stopped and Punch-Through Jets in Heavy-Ion Collisions
text, January 2008


Jet quenching in hot strongly coupled gauge theories simplified
text, January 2011


Jet quenching via jet collimation
text, January 2011


Coupling dependence of jet quenching in hot strongly-coupled gauge theories
text, January 2012


The contribution of medium-modified color flow to jet quenching
text, January 2012


Heavy ions and string theory
text, January 2013


JEWEL 2.0.0 - Directions for Use
text, January 2013


Geometrical aspects of jet quenching in JEWEL
text, January 2013


Jet (de)coherence in Pb-Pb collisions at the LHC
text, January 2014


A Hybrid Strong/Weak Coupling Approach to Jet Quenching
text, January 2014


Picturing perturbative parton cascades in QCD matter
text, January 2014


Angular structure of the in-medium QCD cascade
text, January 2014


Medium-induced jet evolution: wave turbulence and energy loss
preprint, January 2014


Jet Structure in Heavy Ion Collisions
text, January 2015


Jet quenching in high-energy heavy-ion collisions
text, January 2015


On the Evolution of Jet Energy and Opening Angle in Strongly Coupled Plasma
preprint, January 2015


Sub-jet structure as a discriminating quenching probe
text, January 2015


Thermalization of mini-jets in a quark-gluon plasma
text, January 2015


Radial and elliptic flow at RHIC: further predictions
text, January 2001


Matter in extremis: ultrarelativistic nuclear collisions at RHIC
text, January 2004


Transverse Momentum Broadening of a Fast Quark in a $\N=4$ Yang Mills Plasma
text, January 2007


Works referencing / citing this record:

New approach to initializing hydrodynamic fields and mini-jet propagation in quark-gluon fluids
journal, May 2017


Mapping collinear in-medium parton splittings
journal, January 2020

  • Domínguez, Fabio; Milhano, José Guilherme; Salgado, Carlos A.
  • The European Physical Journal C, Vol. 80, Issue 1
  • DOI: 10.1140/epjc/s10052-019-7563-0

Comparison of Fragmentation Functions for Jets Dominated by Light Quarks and Gluons from $pp$ and Pb+Pb Collisions in ATLAS
text, January 2019

  • Aaboud, Morad; Aad, Georges; Abbott, Brad
  • Deutsches Elektronen-Synchrotron, DESY, Hamburg
  • DOI: 10.3204/pubdb-2019-03271

Measurement of jet fragmentation in Pb+Pb and pp collisions at √sNN = 5.02 TeV with the ATLAS detector
text, January 2018

  • Rimoldi, Marco; Mullier, Geoffrey; Miucci, Antonio
  • American Institute of Physics
  • DOI: 10.7892/boris.129046

Gluon emission from heavy quarks in dense nuclear matter
journal, September 2019


Full jet in quark-gluon plasma with hydrodynamic medium response
text, January 2017


New approach to initializing hydrodynamic fields and mini-jet propagation in quark-gluon fluids
text, January 2017


Mapping collinear in-medium parton splittings
text, January 2019