186
M. M. Aggarwal
13. J. Admas et al., STAR Collaboration, Azimuthal anisotropy in Au+Au collisions at
√ s N N =
200 GeV. Phys. Rev. C 72, 0149040 (2005)
14. S.S. Adler et al., PHENIX Collaboration, Elliptic flow of identified hadrons in Au + Au collisions at
√
s N N = 200 GeV. Phys. Rev. Lett. 91, 182301 (2003)
15. H. Satz, Extreme States of Matter in Strong Interaction Physics. Lecture Notes in Physics, 1st
edn., vol. 841 (Springer, Heidelberg, 2012)
16. W. Florkowski, Phenomenology of Ultra-relativistic Heavy-Ion Collisions (World Scientific,
Singapore, 2010)
17. J. Bartke, Relativistic Heavy-Ion Physics (World Scientific, Singapore, 2008)
18. J. Letessier, J. Rafelski, Hadrons and Quark-Gluon Plasma (Cambridge University Press,
Cambridge, 2002)
19. C.Y. Wong, Introduction to High-Energy Heavy-Ion Collisions (World Scientific, Singapore,
1994)
20. B. Muller, The Physics of the Quark-Gluon Plasma. Lecture Notes in Physics, 1st edn., vol.
225 (Springer, Heidelberg, 1985)
21. S.A. Voloshin, Y. Zhang, Flow study in relativistic nuclear collisions by Fourier expansion of
Azimuthal particle distributions. Phys. Rev. C 70, 665–672 (1996)
22. A.M. Poskanzer, S.A. Voloshin, Methods for analyzing anisotropic flow in relativistic nuclear
collisions. Phys. Rev. C 58, 1671–78 (1998)
23. J. Barrette et al., E877 Collaboration, Energy and charged particle flow in 10.8 A GeV/c Au+Au
collisions. Phys. Rev. C 55, 1420–1430 (1997)
24. A. Bilandzic, R. Snellings, Flow analysis with cumulants: direct calculations. Phys. Rev. C 83,
044913 (2011)
25. G. Aad et al., Measurement of the distribution of event-by-event flow harmonics in lead-lead
collisions at
√ s N N = 2.76 TeV with the ATLAS detector at the LHC. JHEP 11, 183–205 (2013)
26. I. Selyuzhenkov, S. Voloshin, Effects of nonuniform acceptance in anisotropic flow measurements. Phys. Rev. C 77, 034904 (2008)
27. N. Borghini, P.M. Dinh, J.Y. Ollitrault, Flow analysis from multiparticle Azimuthal correlations.
Phys. Rev. C 64, 054901 (2001)
28. K. Aamodt et al., ALICE Collaboration, Elliptic flow of charged particles in Pb-Pb collisions
at
√
s N N =2.76 TeV. Phys. Rev. Lett. 105, 252302 (2010)
29. K. Burka et al., ATLAS Collaboration, Measurement of Azimuthal flow of soft and high-p_T
charged particles in 5.02 TeV Pb+Pb collisions with the ATLAS detector. Nucl. Part. Phys.
Proc. 289, 441 (2017)
30. B. Abelev et al., ALICE Collaboration, Charge separation relative to the reaction plane in
Pb-Pb. Phys. Rev. Lett. 110, 012301 (2013)
31. P. Huovinen et al., Radial and elliptic flow at RHIC: further predictions. Phys. Lett. B 503,
58–64 (2001)
32. H. Song, S.A. Bass, U. Heinz, Elliptic flow in
√ s N N =200 GeV Au+Au collisions and
√
s=2.76
TeV Pb+Pb collisions: insights from viscous hydrodynamics+hadron cascade hybrid model.
Phys. Rev. C 83, 054912 (2011)
33. B.I. Abelev et al., STAR Collaboration, Centrality dependence of charged hadron and strange
hadron elliptic flow from
√
s N N =200 GeVAu+Au collisions. Phys. Rev. C 77, 054901 (2008)
34. B.B. Abelev et al., ALICE Collaboration, (Anti-)deuteron production and anisotropic flow
measured with ALICE at the LHC. JHEP 06, 190 (2015)
35. P. Bozek, Component of elliptic flow in Pb-Pb collisions at 2.76 Tev. Phys. Lett. B 699, 283
(2011). arXiv:1101.1791 [nucl-th]
36. T. Hirano, P. Huovinen, Y. Nara, Elliptic flow in Pb+Pb collisions at
√ s N N = 2.76 TeV: hybrid
model assessment of the first data. Phys. Rev. C 84, 011901 (2011). arXiv:1012.3955 [nucl-th]
37. L. Adamczyk et al., STAR Collaboration, Azimuthal anisotropy in Cu+Au collisions at
√
s N N =200 GeV. Phys. Rev. C 98, 014915 (2018)
38. ATLAS Collaboration, Measurement of the distributions of event-by-event flow harmonics in
Pb-Pb collisions at
√ s N N =2.76 TeV. ATLAS-CONF-2012-114, https://cdsweb.cern.ch/record/
1472935
M. M. Aggarwal
13. J. Admas et al., STAR Collaboration, Azimuthal anisotropy in Au+Au collisions at
√ s N N =
200 GeV. Phys. Rev. C 72, 0149040 (2005)
14. S.S. Adler et al., PHENIX Collaboration, Elliptic flow of identified hadrons in Au + Au collisions at
√
s N N = 200 GeV. Phys. Rev. Lett. 91, 182301 (2003)
15. H. Satz, Extreme States of Matter in Strong Interaction Physics. Lecture Notes in Physics, 1st
edn., vol. 841 (Springer, Heidelberg, 2012)
16. W. Florkowski, Phenomenology of Ultra-relativistic Heavy-Ion Collisions (World Scientific,
Singapore, 2010)
17. J. Bartke, Relativistic Heavy-Ion Physics (World Scientific, Singapore, 2008)
18. J. Letessier, J. Rafelski, Hadrons and Quark-Gluon Plasma (Cambridge University Press,
Cambridge, 2002)
19. C.Y. Wong, Introduction to High-Energy Heavy-Ion Collisions (World Scientific, Singapore,
1994)
20. B. Muller, The Physics of the Quark-Gluon Plasma. Lecture Notes in Physics, 1st edn., vol.
225 (Springer, Heidelberg, 1985)
21. S.A. Voloshin, Y. Zhang, Flow study in relativistic nuclear collisions by Fourier expansion of
Azimuthal particle distributions. Phys. Rev. C 70, 665–672 (1996)
22. A.M. Poskanzer, S.A. Voloshin, Methods for analyzing anisotropic flow in relativistic nuclear
collisions. Phys. Rev. C 58, 1671–78 (1998)
23. J. Barrette et al., E877 Collaboration, Energy and charged particle flow in 10.8 A GeV/c Au+Au
collisions. Phys. Rev. C 55, 1420–1430 (1997)
24. A. Bilandzic, R. Snellings, Flow analysis with cumulants: direct calculations. Phys. Rev. C 83,
044913 (2011)
25. G. Aad et al., Measurement of the distribution of event-by-event flow harmonics in lead-lead
collisions at
√ s N N = 2.76 TeV with the ATLAS detector at the LHC. JHEP 11, 183–205 (2013)
26. I. Selyuzhenkov, S. Voloshin, Effects of nonuniform acceptance in anisotropic flow measurements. Phys. Rev. C 77, 034904 (2008)
27. N. Borghini, P.M. Dinh, J.Y. Ollitrault, Flow analysis from multiparticle Azimuthal correlations.
Phys. Rev. C 64, 054901 (2001)
28. K. Aamodt et al., ALICE Collaboration, Elliptic flow of charged particles in Pb-Pb collisions
at
√
s N N =2.76 TeV. Phys. Rev. Lett. 105, 252302 (2010)
29. K. Burka et al., ATLAS Collaboration, Measurement of Azimuthal flow of soft and high-p_T
charged particles in 5.02 TeV Pb+Pb collisions with the ATLAS detector. Nucl. Part. Phys.
Proc. 289, 441 (2017)
30. B. Abelev et al., ALICE Collaboration, Charge separation relative to the reaction plane in
Pb-Pb. Phys. Rev. Lett. 110, 012301 (2013)
31. P. Huovinen et al., Radial and elliptic flow at RHIC: further predictions. Phys. Lett. B 503,
58–64 (2001)
32. H. Song, S.A. Bass, U. Heinz, Elliptic flow in
√ s N N =200 GeV Au+Au collisions and
√
s=2.76
TeV Pb+Pb collisions: insights from viscous hydrodynamics+hadron cascade hybrid model.
Phys. Rev. C 83, 054912 (2011)
33. B.I. Abelev et al., STAR Collaboration, Centrality dependence of charged hadron and strange
hadron elliptic flow from
√
s N N =200 GeVAu+Au collisions. Phys. Rev. C 77, 054901 (2008)
34. B.B. Abelev et al., ALICE Collaboration, (Anti-)deuteron production and anisotropic flow
measured with ALICE at the LHC. JHEP 06, 190 (2015)
35. P. Bozek, Component of elliptic flow in Pb-Pb collisions at 2.76 Tev. Phys. Lett. B 699, 283
(2011). arXiv:1101.1791 [nucl-th]
36. T. Hirano, P. Huovinen, Y. Nara, Elliptic flow in Pb+Pb collisions at
√ s N N = 2.76 TeV: hybrid
model assessment of the first data. Phys. Rev. C 84, 011901 (2011). arXiv:1012.3955 [nucl-th]
37. L. Adamczyk et al., STAR Collaboration, Azimuthal anisotropy in Cu+Au collisions at
√
s N N =200 GeV. Phys. Rev. C 98, 014915 (2018)
38. ATLAS Collaboration, Measurement of the distributions of event-by-event flow harmonics in
Pb-Pb collisions at
√ s N N =2.76 TeV. ATLAS-CONF-2012-114, https://cdsweb.cern.ch/record/
1472935
