Anisotropic flow of identified particles in Pb-Pb collisions at $$ {\sqrt{s}}_{\mathrm{NN}}=5.02 $$ TeV

Author:

,Acharya S.,Acosta F. T.-.,Adamová D.,Adolfsson J.,Aggarwal M. M.,Aglieri Rinella G.,Agnello M.,Agrawal N.,Ahammed Z.,Ahn S. U.,Aiola S.,Akindinov A.,Al-Turany M.,Alam S. N.,Albuquerque D. S. D.,Aleksandrov D.,Alessandro B.,Alfaro Molina R.,Ali Y.,Alici A.,Alkin A.,Alme J.,Alt T.,Altenkamper L.,Altsybeev I.,Anaam M. N.,Andrei C.,Andreou D.,Andrews H. A.,Andronic A.,Angeletti M.,Anguelov V.,Anson C.,Antičić T.,Antinori F.,Antonioli P.,Anwar R.,Apadula N.,Aphecetche L.,Appelshäuser H.,Arcelli S.,Arnaldi R.,Arnold O. W.,Arsene I. C.,Arslandok M.,Audurier B.,Augustinus A.,Averbeck R.,Azmi M. D.,Badalà A.,Baek Y. W.,Bagnasco S.,Bailhache R.,Bala R.,Baldisseri A.,Ball M.,Baral R. C.,Barbano A. M.,Barbera R.,Barile F.,Barioglio L.,Barnaföldi G. G.,Barnby L. S.,Barret V.,Bartalini P.,Barth K.,Bartsch E.,Bastid N.,Basu S.,Batigne G.,Batyunya B.,Batzing P. C.,Bazo Alba J. L.,Bearden I. G.,Beck H.,Bedda C.,Behera N. K.,Belikov I.,Bellini F.,Bello Martinez H.,Bellwied R.,Beltran L. G. E.,Belyaev V.,Bencedi G.,Beole S.,Bercuci A.,Berdnikov Y.,Berenyi D.,Bertens R. A.,Berzano D.,Betev L.,Bhaduri P. P.,Bhasin A.,Bhat I. R.,Bhatt H.,Bhattacharjee B.,Bhom J.,Bianchi A.,Bianchi L.,Bianchi N.,Bielčík J.,Bielčíková J.,Bilandzic A.,Biro G.,Biswas R.,Biswas S.,Blair J. T.,Blau D.,Blume C.,Boca G.,Bock F.,Bogdanov A.,Boldizsár L.,Bombara M.,Bonomi G.,Bonora M.,Borel H.,Borissov A.,Borri M.,Botta E.,Bourjau C.,Bratrud L.,Braun-Munzinger P.,Bregant M.,Broker T. A.,Broz M.,Brucken E. J.,Bruna E.,Bruno G. E.,Budnikov D.,Buesching H.,Bufalino S.,Buhler P.,Buncic P.,Busch O.,Buthelezi Z.,Butt J. B.,Buxton J. T.,Cabala J.,Caffarri D.,Caines H.,Caliva A.,Calvo Villar E.,Camacho R. S.,Camerini P.,Capon A. A.,Carena F.,Carena W.,Carnesecchi F.,Castillo Castellanos J.,Castro A. J.,Casula E. A. R.,Ceballos Sanchez C.,Chandra S.,Chang B.,Chang W.,Chapeland S.,Chartier M.,Chattopadhyay S.,Chattopadhyay S.,Chauvin A.,Cheshkov C.,Cheynis B.,Chibante Barroso V.,Chinellato D. D.,Cho S.,Chochula P.,Chowdhury T.,Christakoglou P.,Christensen C. H.,Christiansen P.,Chujo T.,Chung S. U.,Cicalo C.,Cifarelli L.,Cindolo F.,Cleymans J.,Colamaria F.,Colella D.,Collu A.,Colocci M.,Concas M.,Conesa Balbastre G.,Conesa del Valle Z.,Contreras J. G.,Cormier T. M.,Corrales Morales Y.,Cortese P.,Cosentino M. R.,Costa F.,Costanza S.,Crkovská J.,Crochet P.,Cuautle E.,Cunqueiro L.,Dahms T.,Dainese A.,Dani S.,Danisch M. C.,Danu A.,Das D.,Das I.,Das S.,Dash A.,Dash S.,De S.,De Caro A.,de Cataldo G.,de Conti C.,de Cuveland J.,De Falco A.,De Gruttola D.,De Marco N.,De Pasquale S.,De Souza R. D.,Degenhardt H. F.,Deisting A.,Deloff A.,Delsanto S.,Deplano C.,Dhankher P.,Di Bari D.,Di Mauro A.,Di Ruzza B.,Diaz R. A.,Dietel T.,Dillenseger P.,Ding Y.,Divià R.,Djuvsland Ø.,Dobrin A.,Domenicis Gimenez D.,Dönigus B.,Dordic O.,Doremalen L. V. R.,Dubey A. K.,Dubla A.,Ducroux L.,Dudi S.,Duggal A. K.,Dukhishyam M.,Dupieux P.,Ehlers R. J.,Elia D.,Endress E.,Engel H.,Epple E.,Erazmus B.,Erhardt F.,Ersdal M. R.,Espagnon B.,Eulisse G.,Eum J.,Evans D.,Evdokimov S.,Fabbietti L.,Faggin M.,Faivre J.,Fantoni A.,Fasel M.,Feldkamp L.,Feliciello A.,Feofilov G.,Fernández Téllez A.,Ferretti A.,Festanti A.,Feuillard V. J. G.,Figiel J.,Figueredo M. A. S.,Filchagin S.,Finogeev D.,Fionda F. M.,Fiorenza G.,Flor F.,Floris M.,Foertsch S.,Foka P.,Fokin S.,Fragiacomo E.,Francescon A.,Francisco A.,Frankenfeld U.,Fronze G. G.,Fuchs U.,Furget C.,Furs A.,Fusco Girard M.,Gaardhøje J. J.,Gagliardi M.,Gago A. M.,Gajdosova K.,Gallio M.,Galvan C. D.,Ganoti P.,Garabatos C.,Garcia-Solis E.,Garg K.,Gargiulo C.,Gasik P.,Gauger E. F.,Gay Ducati M. B.,Germain M.,Ghosh J.,Ghosh P.,Ghosh S. K.,Gianotti P.,Giubellino P.,Giubilato P.,Glässel P.,Goméz Coral D. M.,Gomez Ramirez A.,Gonzalez V.,González-Zamora P.,Gorbunov S.,Görlich L.,Gotovac S.,Grabski V.,Graczykowski L. K.,Graham K. 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T.,Jin M.,Jones P. G.,Jusko A.,Kalinak P.,Kalweit A.,Kang J. H.,Kaplin V.,Kar S.,Karasu Uysal A.,Karavichev O.,Karavicheva T.,Karczmarczyk P.,Karpechev E.,Kebschull U.,Keidel R.,Keijdener D. L. D.,Keil M.,Ketzer B.,Khabanova Z.,Khan A. M.,Khan S.,Khan S. A.,Khanzadeev A.,Kharlov Y.,Khatun A.,Khuntia A.,Kielbowicz M. M.,Kileng B.,Kim B.,Kim D.,Kim D. J.,Kim E. J.,Kim H.,Kim J. S.,Kim J.,Kim M.,Kim S.,Kim T.,Kim T.,Kirsch S.,Kisel I.,Kiselev S.,Kisiel A.,Klay J. L.,Klein C.,Klein J.,Klein-Bösing C.,Klewin S.,Kluge A.,Knichel M. L.,Knospe A. G.,Kobdaj C.,Kofarago M.,Köhler M. K.,Kollegger T.,Kondratyeva N.,Kondratyuk E.,Konevskikh A.,Konyushikhin M.,Kovalenko O.,Kovalenko V.,Kowalski M.,Králik I.,Kravčáková A.,Kreis L.,Krivda M.,Krizek F.,Krüger M.,Kryshen E.,Krzewicki M.,Kubera A. M.,Kučera V.,Kuhn C.,Kuijer P. G.,Kumar J.,Kumar L.,Kumar S.,Kundu S.,Kurashvili P.,Kurepin A.,Kurepin A. B.,Kuryakin A.,Kushpil S.,Kvapil J.,Kweon M. J.,Kwon Y.,La Pointe S. L.,La Rocca P.,Lai Y. 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Abstract

Abstract The elliptic (v 2), triangular (v 3), and quadrangular (v 4) flow coefficients of π±, K±, $$ \mathrm{p}+\overline{\mathrm{p}},\kern0.5em \Lambda +\overline{\Lambda},\kern0.5em {\mathrm{K}}_{\mathrm{S}}^0 $$ p + p ¯ , Λ + Λ ¯ , K S 0 , and the ϕ-meson are measured in Pb-Pb collisions at $$ {\sqrt{s}}_{\mathrm{NN}}=5.02 $$ s N N = 5.02 TeV. Results obtained with the scalar product method are reported for the rapidity range |y| < 0.5 as a function of transverse momentum, p T, at different collision centrality intervals between 0–70%, including ultra-central (0–1%) collisions for π ±, K±, and $$ \mathrm{p}+\overline{\mathrm{p}} $$ p + p ¯ . For p T < 3 GeV/c, the flow coefficients exhibit a particle mass dependence. At intermediate transverse momenta (3 < p T < 8–10 GeV/c), particles show an approximate grouping according to their type (i.e., mesons and baryons). The ϕ-meson v 2, which tests both particle mass dependence and type scaling, follows $$ \mathrm{p}+\overline{\mathrm{p}} $$ p + p ¯ v 2 at low p T and π± v 2 at intermediate p T. The evolution of the shape of v n(p T) as a function of centrality and harmonic number n is studied for the various particle species. Flow coefficients of π ±, K±, and $$ \mathrm{p}+\overline{\mathrm{p}} $$ p + p ¯ for p T < 3 GeV/c are compared to iEBE-VISHNU and MUSIC hydrodynamical calculations coupled to a hadronic cascade model (UrQMD). The iEBE-VISHNU calculations describe the results fairly well for p T < 2.5 GeV/c, while MUSIC calculations reproduce the measurements for p T < 1 GeV/c. A comparison to v n coefficients measured in Pb-Pb collisions at $$ \sqrt{s_{\mathrm{NN}}}=2.76 $$ s N N = 2.76 TeV is also provided.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear and High Energy Physics

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