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Showing results (61-70 of 120) with videos related to

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Physical Review Letters|January 17, 2012
Measurements of higher order flow harmonics in Au+Au collisions at √s(NN)=200 GeVA Adare, S Afanasiev, C Aidala, et al.
Physical Review Letters|June 21, 2014
Azimuthal-angle dependence of charged-pion-interferometry measurements with respect to second- and third-order event planes in Au+Au collisions at √[S(NN)]=200  GeVA Adare, S Afanasiev, C Aidala, et al.
Physical Review Letters|January 15, 2011
Azimuthal anisotropy of π⁰ production in Au+Au collisions at sqrt((s)NN)=200  GeV: path-length dependence of jet quenching and the role of initial geometryA Adare, S Afanasiev, C Aidala, et al.
Physical Review Letters|November 24, 2011
Suppression of back-to-back hadron pairs at forward rapidity in d+Au collisions at √s(NN)=200 GeVA Adare, S Afanasiev, C Aidala, et al.
Physical Review Letters|August 16, 2020
Erratum: Evolution of π^{0} Suppression in Au+Au Collisions from sqrt[s_{NN}]=39 to 200 GeV [Phys. Rev. Lett. 109, 152301 (2012)]A Adare, S Afanasiev, C Aidala, et al.
Physical Review Letters|September 26, 2012
Observation of direct-photon collective flow in Au + Au collisions at √s(NN)] = 200 GeVA Adare, S Afanasiev, C Aidala, et al.
Physical Review Letters|July 12, 2014
Cold-nuclear-matter effects on heavy-quark production at forward and backward rapidity in d + Au collisions at √sNN = 200  GeVA Adare, C Aidala, N N Ajitanand, et al.
Physical Review Letters|May 30, 2015
Measurement of Long-Range Angular Correlation and Quadrupole Anisotropy of Pions and (Anti)Protons in Central d+Au Collisions at sqrt[s_{NN}]=200 GeVA Adare, C Aidala, N N Ajitanand, et al.
Physical Review Letters|November 13, 2008
Onset of pi(0) suppression studied in Cu+Cu collisions at sqrt S NN=22.4, 62.4, and 200 GeVA Adare, S Afanasiev, C Aidala, et al.
Physical Review Letters|November 24, 2011
Cold nuclear matter effects on J/ψ yields as a function of rapidity and nuclear geometry in d+A collisions at sqrt[s(NN)]=200  GeVA Adare, S Afanasiev, C Aidala, et al.
Pageof 12

Showing results (61-70 of 120) with videos related to

Sort By:
Pageof 12
Physical Review Letters|January 17, 2012
Measurements of higher order flow harmonics in Au+Au collisions at √s(NN)=200 GeVA Adare, S Afanasiev, C Aidala, et al.
Physical Review Letters|June 21, 2014
Azimuthal-angle dependence of charged-pion-interferometry measurements with respect to second- and third-order event planes in Au+Au collisions at √[S(NN)]=200  GeVA Adare, S Afanasiev, C Aidala, et al.
Physical Review Letters|January 15, 2011
Azimuthal anisotropy of π⁰ production in Au+Au collisions at sqrt((s)NN)=200  GeV: path-length dependence of jet quenching and the role of initial geometryA Adare, S Afanasiev, C Aidala, et al.
Physical Review Letters|November 24, 2011
Suppression of back-to-back hadron pairs at forward rapidity in d+Au collisions at √s(NN)=200 GeVA Adare, S Afanasiev, C Aidala, et al.
Physical Review Letters|August 16, 2020
Erratum: Evolution of π^{0} Suppression in Au+Au Collisions from sqrt[s_{NN}]=39 to 200 GeV [Phys. Rev. Lett. 109, 152301 (2012)]A Adare, S Afanasiev, C Aidala, et al.
Physical Review Letters|September 26, 2012
Observation of direct-photon collective flow in Au + Au collisions at √s(NN)] = 200 GeVA Adare, S Afanasiev, C Aidala, et al.
Physical Review Letters|July 12, 2014
Cold-nuclear-matter effects on heavy-quark production at forward and backward rapidity in d + Au collisions at √sNN = 200  GeVA Adare, C Aidala, N N Ajitanand, et al.
Physical Review Letters|May 30, 2015
Measurement of Long-Range Angular Correlation and Quadrupole Anisotropy of Pions and (Anti)Protons in Central d+Au Collisions at sqrt[s_{NN}]=200 GeVA Adare, C Aidala, N N Ajitanand, et al.
Physical Review Letters|November 13, 2008
Onset of pi(0) suppression studied in Cu+Cu collisions at sqrt S NN=22.4, 62.4, and 200 GeVA Adare, S Afanasiev, C Aidala, et al.
Physical Review Letters|November 24, 2011
Cold nuclear matter effects on J/ψ yields as a function of rapidity and nuclear geometry in d+A collisions at sqrt[s(NN)]=200  GeVA Adare, S Afanasiev, C Aidala, et al.
Pageof 12