Bibcode
Sirunyan, A. M.; Tumasyan, A.; Adam, W.; Ambrogi, F.; Asilar, E.; Bergauer, T.; Brandstetter, J.; Brondolin, E.; Dragicevic, M.; Erö, J.; Flechl, M.; Friedl, M.; Frühwirth, R.; Ghete, V. M.; Grossmann, J.; Hrubec, J.; Jeitler, M.; König, A.; Krammer, N.; Krätschmer, I.; Liko, D.; Madlener, T.; Mikulec, I.; Pree, E.; Rad, N.; Rohringer, H.; Schieck, J.; Schöfbeck, R.; Spanring, M.; Spitzbart, D.; Waltenberger, W.; Wittmann, J.; Wulz, C.-E.; Zarucki, M.; Chekhovsky, V.; Mossolov, V.; Suarez Gonzalez, J.; De Wolf, E. A.; Di Croce, D.; Janssen, X.; Lauwers, J.; Van Haevermaet, H.; Van Mechelen, P.; Van Remortel, N.; Abu Zeid, S.; Blekman, F.; D'Hondt, J.; De Bruyn, I.; De Clercq, J.; Deroover, K.; Flouris, G.; Lontkovskyi, D.; Lowette, S.; Moortgat, S.; Moreels, L.; Python, Q.; Skovpen, K.; Tavernier, S.; Van Doninck, W.; Van Mulders, P.; Van Parijs, I.; Beghin, D.; Brun, H.; Clerbaux, B.; De Lentdecker, G.; Delannoy, H.; Dorney, B.; Fasanella, G.; Favart, L.; Goldouzian, R.; Grebenyuk, A.; Karapostoli, G.; Lenzi, T.; Luetic, J.; Maerschalk, T.; Marinov, A.; Randle-conde, A.; Seva, T.; Starling, E.; Vander Velde, C.; Vanlaer, P.; Vannerom, D.; Yonamine, R.; Zenoni, F.; Zhang, F.; Cimmino, A.; Cornelis, T.; Dobur, D.; Fagot, A.; Gul, M.; Khvastunov, I.; Poyraz, D.; Roskas, C.; Salva, S.; Tytgat, M.; Verbeke, W.; Zaganidis, N.; Bakhshiansohi, H.; Bondu, O.; Brochet, S. et al.
Referencia bibliográfica
Physical Review C, Volume 97, Issue 4, id.044912
Fecha de publicación:
4
2018
Número de citas
120
Número de citas referidas
86
Descripción
Charge-dependent azimuthal correlations of same- and opposite-sign pairs
with respect to the second- and third-order event planes have been
measured in p Pb collisions at √{s NN}=8.16
TeV and PbPb collisions at 5.02 TeV with the CMS experiment at the LHC.
The measurement is motivated by the search for the charge separation
phenomenon predicted by the chiral magnetic effect (CME) in heavy ion
collisions. Three- and two-particle azimuthal correlators are extracted
as functions of the pseudorapidity difference, the transverse momentum
(pT) difference, and the pT average of same- and
opposite-charge pairs in various event multiplicity ranges. The data
suggest that the charge-dependent three-particle correlators with
respect to the second- and third-order event planes share a common
origin, predominantly arising from charge-dependent two-particle
azimuthal correlations coupled with an anisotropic flow. The CME is
expected to lead to a v2-independent three-particle
correlation when the magnetic field is fixed. Using an event shape
engineering technique, upper limits on the v2-independent
fraction of the three-particle correlator are estimated to be 13% for p
Pb and 7% for PbPb collisions at 95% confidence level. The results of
this analysis, both the dominance of two-particle correlations as a
source of the three-particle results and the similarities seen between
PbPb and p Pb , provide stringent constraints on the origin of
charge-dependent three-particle azimuthal correlations and challenge
their interpretation as arising from a chiral magnetic effect in heavy
ion collisions.