September 2016

Journal

Scaling properties of fractional momentum loss of high-p(T) hadrons in nucleus-nucleus collisions at root s(NN) from 62.4 GeV to 2.76 TeV

By:
Adare, A.; Awes, Terry C; Cianciolo, Thomas ; Efremenko, Yuri V; Enokizono, A.; Hornback, Donald; Read, Kenneth; Silvermyr, D.; Sorensen, Soren; Stankus, Paul W; Young, Glenn
Journal Name:
Physical Review C
Page Number:
24911-24911
Volume:
93
Issue Number:
2
Publication Date:
September 10, 2016
View DOI Listing:
https://doi.org/10.1103/PhysRevC.93.024911

Abstract

Measurements of the fractional momentum loss (S-loss = delta p(T) / p(T)) of high-transverse-momentum-identified hadrons in heavy-ion collisions are presented. Using pi(0) in Au + Au and Cu + Cu collisions at root s(NN) = 62.4 and 200 GeV measured by the PHENIX experiment at the Relativistic Heavy Ion Collider and and charged hadrons in Pb + Pb collisions measured by the ALICE experiment at the Large Hadron Collider, we studied the scaling properties of S-loss as a function of a number of variables: the number of participants, N-part, the number of quark participants, N-qp, the charged-particle density, dN(ch)/d(eta), and the Bjorken energy density times the equilibration time, epsilon(Bj)tau(0). We find that the p(T), where S-loss has its maximum, varies both with centrality and collision energy. Above the maximum, S-loss tends to follow a power-law function with all four scaling variables. The data at root s(NN) = 200 GeV and 2.76 TeV, for sufficiently high particle densities, have a common scaling of S-loss with dN(ch)/d(eta) and epsilon(Bj)tau(0), lending insight into the physics of parton energy loss.


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