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Benvenuti nell'Anagrafe della Ricerca d'Ateneo
ATLAS measurements of the azimuthal anisotropy in lead–lead collisions at √sNN = 2.76 TeV are shown using a dataset of approximately 7µb−1 collected at the LHC in 2010. The measurements are performed for charged particles with transverse momenta 0.5 < pT < 20 GeV and in the pseudorapidity range |η| < 2.5. The anisotropy is characterized by the Fourier coefficients, vn, of the charged-particle azimuthal angle distribution for n = 2–4. The Fourier coef- ficients are evaluated using multi-particle cumulants calculated with the generating function method. Results on the transverse momentum, pseudorapidity and centrality dependence of the vn coefficients are presented. The elliptic flow, v2, is obtained from the two-, four-, six- and eight-particle cumulants while higher-order coefficients, v3 and v4, are determined with two- and four-particle cumulants. Flow harmonics vn measured with four-particle cumulants are significantly reduced compared to the measurement involving two-particle cumulants. A comparison to vn measurements obtained using different analysis methods and previously reported by the LHC experiments is also shown. Results of measurements of flow fluctuations evaluated with multiparticle cumulants are shown as a function of transverse momentum and the collision centrality. Models of the initial spatial geometry and its fluctuations fail to describe the flow fluctuations measurements.
Aad, G., Abbott, B., Abdallah, J., Abdel Khalek, S., Abdinov, O., Aben, R., et al. (2014). Measurement of flow harmonics with multi-particle cumulants in Pb plus Pb collisions at root(NN)-N-S=2.76 TeV with the ATLAS detector. THE EUROPEAN PHYSICAL JOURNAL. C, PARTICLES AND FIELDS, 74(11), 1-28 [10.1140/epjc/s10052-014-3157-z].
Measurement of flow harmonics with multi-particle cumulants in Pb plus Pb collisions at root(NN)-N-S=2.76 TeV with the ATLAS detector
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Iodice;K. Iordanidou;V. Ippolito;A. Irles Quiles;C. Isaksson;M. Ishino;M. Ishitsuka;R. Ishmukhametov;C. Issever;S. Istin;J. M. Iturbe Ponce;R. Iuppa;J. Ivarsson;W. Iwanski;H. Iwasaki;J. M. Izen;V. Izzo;B. Jackson;M. Jackson;P. Jackson;M. R. Jaekel;V. Jain;K. Jakobs;S. Jakobsen;T. Jakoubek;J. Jakubek;D. O. Jamin;D. K. Jana;E. Jansen;H. Jansen;J. Janssen;M. Janus;G. Jarlskog;N. Javadov;T. Javůrek;L. Jeanty;J. Jejelava;G. -Y. Jeng;D. Jennens;P. Jenni;J. Jentzsch;C. Jeske;S. Jézéquel;H. Ji;J. Jia;Y. Jiang;M. Jimenez Belenguer;S. Jin;A. Jinaru;O. Jinnouchi;M. D. Joergensen;K. E. Johansson;P. Johansson;K. A. Johns;K. Jon-And;G. Jones;R. W. L. Jones;T. J. Jones;J. Jongmanns;P. M. Jorge;K. D. Joshi;J. Jovicevic;X. Ju;C. A. Jung;R. M. Jungst;P. Jussel;A. Juste Rozas;M. Kaci;A. Kaczmarska;M. Kado;H. Kagan;M. Kagan;E. Kajomovitz;C. W. Kalderon;S. Kama;A. Kamenshchikov;N. Kanaya;M. Kaneda;S. Kaneti;V. A. Kantserov;J. Kanzaki;B. Kaplan;A. Kapliy;D. Kar;K. Karakostas;N. Karastathis;M. Karnevskiy;S. N. Karpov;Z. M. Karpova;K. Karthik;V. Kartvelishvili;A. N. Karyukhin;L. Kashif;G. Kasieczka;R. D. Kass;A. Kastanas;Y. Kataoka;A. Katre;J. Katzy;V. Kaushik;K. Kawagoe;T. Kawamoto;G. Kawamura;S. Kazama;V. F. Kazanin;M. Y. Kazarinov;R. Keeler;R. Kehoe;M. Keil;J. S. Keller;J. J. Kempster;H. Keoshkerian;O. Kepka;B. P. Kerševan;S. Kersten;K. Kessoku;J. Keung;F. Khalil-zada;H. Khandanyan;A. Khanov;A. Khodinov;A. Khomich;T. J. Khoo;G. Khoriauli;A. Khoroshilov;V. Khovanskiy;E. Khramov;J. Khubua;H. Y. Kim;H. Kim;S. H. Kim;N. Kimura;O. Kind;B. T. King;M. King;R. S. B. King;S. B. King;J. Kirk;A. E. Kiryunin;T. Kishimoto;D. Kisielewska;F. Kiss;T. Kittelmann;K. Kiuchi;E. Kladiva;M. Klein;U. Klein;K. Kleinknecht;P. Klimek;A. Klimentov;R. Klingenberg;J. A. Klinger;T. Klioutchnikova;P. F. Klok;E. -E. Kluge;P. Kluit;S. Kluth;E. Kneringer;E. B. F. G. Knoops;A. Knue;D. Kobayashi;T. Kobayashi;M. Kobel;M. Kocian;P. Kodys;P. Koevesarki;T. Koffas;E. Koffeman;L. A. Kogan;S. Kohlmann;Z. Kohout;T. Kohriki;T. Koi;H. Kolanoski;I. Koletsou;J. Koll;A. A. Komar;Y. Komori;T. Kondo;N. Kondrashova;K. Köneke;A. C. König;S. König;T. Kono;R. Konoplich;N. Konstantinidis;R. Kopeliansky;S. Koperny;L. Köpke;A. K. Kopp;K. Korcyl;K. Kordas;A. Korn;A. A. Korol;I. Korolkov;E. V. Korolkova;V. A. Korotkov;O. Kortner;S. Kortner;V. V. Kostyukhin;V. M. Kotov;A. Kotwal;C. Kourkoumelis;V. Kouskoura;A. Koutsman;R. Kowalewski;T. Z. Kowalski;W. Kozanecki;A. S. Kozhin;V. Kral;V. A. Kramarenko;G. Kramberger;D. Krasnopevtsev;M. W. Krasny;A. Krasznahorkay;J. K. Kraus;A. Kravchenko;S. Kreiss;M. Kretz;J. Kretzschmar;K. Kreutzfeldt;P. Krieger;K. Kroeninger;H. Kroha;J. Kroll;J. Kroseberg;J. Krstic;U. Kruchonak;H. Krüger;T. Kruker;N. Krumnack;Z. V. Krumshteyn;A. Kruse;M. C. Kruse;M. Kruskal;T. Kubota;S. Kuday;S. Kuehn;A. Kugel;A. Kuhl;T. Kuhl;V. Kukhtin;Y. Kulchitsky;S. Kuleshov;M. Kuna;J. Kunkle;A. Kupco;H. Kurashige;Y. A. Kurochkin;R. Kurumida;V. Kus;E. S. Kuwertz;M. Kuze;J. Kvita;A. La Rosa;L. La Rotonda;C. Lacasta;F. Lacava;J. Lacey;H. Lacker;D. Lacour;V. R. Lacuesta;E. Ladygin;R. Lafaye;B. Laforge;T. Lagouri;S. Lai;H. Laier;L. Lambourne;S. Lammers;C. L. Lampen;W. Lampl;E. Lançon;U. Landgraf;M. P. J. Landon;V. S. Lang;A. J. Lankford;F. Lanni;K. Lantzsch;S. Laplace;C. Lapoire;J. F. Laporte;T. Lari;M. Lassnig;P. Laurelli;W. Lavrijsen;A. T. Law;P. Laycock;O. Le Dortz;E. Le Guirriec;E. Le Menedeu;T. LeCompte;F. Ledroit-Guillon;C. A. Lee;H. Lee;J. S. H. Lee;S. C. Lee;L. Lee;G. Lefebvre;M. Lefebvre;F. Legger;C. Leggett;A. Lehan;M. Lehmacher;G. Lehmann Miotto;X. Lei;W. A. Leight;A. Leisos;A. G. Leister;M. A. L. Leite;R. Leitner;D. Lellouch;B. Lemmer;K. J. C. Leney;T. Lenz;G. Lenzen;B. Lenzi;R. Leone;S. Leone;K. Leonhardt;C. Leonidopoulos;S. Leontsinis;C. Leroy;C. G. Lester;C. M. Lester;M. Levchenko;J. Levêque;D. Levin;L. J. Levinson;M. Levy;A. Lewis;G. H. Lewis;A. M. Leyko;M. Leyton;B. Li;B. Li;H. Li;H. L. Li;L. Li;L. Li;S. Li;Y. Li;Z. Liang;H. Liao;B. Liberti;P. Lichard;K. Lie;J. Liebal;W. Liebig;C. Limbach;A. Limosani;S. C. Lin;T. H. Lin;F. Linde;B. E. Lindquist;J. T. Linnemann;E. Lipeles;A. Lipniacka;M. Lisovyi;T. M. Liss;D. Lissauer;A. Lister;A. M. Litke;B. Liu;D. Liu;J. B. Liu;K. Liu;L. Liu;M. Liu;M. Liu;Y. Liu;M. Livan;S. S. A. Livermore;A. Lleres;J. Llorente Merino;S. L. Lloyd;F. Lo Sterzo;E. Lobodzinska;P. Loch;W. S. Lockman;T. Loddenkoetter;F. K. Loebinger;A. E. Loevschall-Jensen;A. Loginov;T. Lohse;K. Lohwasser;M. Lokajicek;V. P. Lombardo;B. A. Long;J. D. Long;R. E. Long;L. Lopes;D. Lopez Mateos;B. Lopez Paredes;I. Lopez Paz;J. Lorenz;N. Lorenzo Martinez;M. Losada;P. Loscutoff;X. Lou;A. Lounis;J. Love;P. A. Love;A. J. Lowe;F. Lu;N. Lu;H. J. Lubatti;C. Luci;A. Lucotte;F. Luehring;W. Lukas;L. Luminari;O. Lundberg;B. Lund-Jensen;M. Lungwitz;D. Lynn;R. Lysak;E. Lytken;H. Ma;L. L. Ma;G. Maccarrone;A. Macchiolo;J. Machado Miguens;D. Macina;D. Madaffari;R. Madar;H. J. Maddocks;W. F. Mader;A. Madsen;M. Maeno;T. Maeno;E. Magradze;K. Mahboubi;J. Mahlstedt;S. Mahmoud;C. Maiani;C. Maidantchik;A. A. Maier;A. Maio;S. Majewski;Y. Makida;N. Makovec;P. Mal;B. Malaescu;Pa. Malecki;V. P. Maleev;F. Malek;U. Mallik;D. Malon;C. Malone;S. Maltezos;V. M. Malyshev;S. Malyukov;J. Mamuzic;B. Mandelli;L. Mandelli;I. Mandić;R. Mandrysch;J. Maneira;A. Manfredini;L. Manhaes de Andrade Filho;J. A. Manjarres Ramos;A. Mann;P. M. Manning;A. Manousakis-Katsikakis;B. Mansoulie;R. Mantifel;L. Mapelli;L. March;J. F. Marchand;G. Marchiori;M. Marcisovsky;C. P. Marino;M. Marjanovic;C. N. Marques;F. Marroquim;S. P. Marsden;Z. Marshall;L. F. Marti;S. Marti-Garcia;B. Martin;B. Martin;T. A. Martin;V. J. Martin;B. Martin dit Latour;H. Martinez;M. Martinez;S. Martin-Haugh;A. C. Martyniuk;M. Marx;F. Marzano;A. Marzin;L. Masetti;T. Mashimo;R. Mashinistov;J. Masik;A. L. Maslennikov;I. Massa;L. Massa;N. Massol;P. Mastrandrea;A. Mastroberardino;T. Masubuchi;P. Mättig;J. Mattmann;J. Maurer;S. J. Maxfield;D. A. Maximov;R. Mazini;L. Mazzaferro;G. Mc Goldrick;S. P. Mc Kee;A. McCarn;R. L. McCarthy;T. G. McCarthy;N. A. McCubbin;K. W. McFarlane;J. A. Mcfayden;G. Mchedlidze;S. J. McMahon;R. A. McPherson;A. Meade;J. Mechnich;M. Medinnis;S. Meehan;S. Mehlhase;A. Mehta;K. Meier;C. Meineck;B. Meirose;C. Melachrinos;B. R. Mellado Garcia;F. Meloni;A. Mengarelli;S. Menke;E. Meoni;K. M. Mercurio;S. Mergelmeyer;N. Meric;P. Mermod;L. Merola;C. Meroni;F. S. Merritt;H. Merritt;A. Messina;J. Metcalfe;A. S. Mete;C. Meyer;C. Meyer;J. -P. Meyer;J. Meyer;R. P. Middleton;S. Migas;L. Mijović;G. Mikenberg;M. Mikestikova;M. Mikuž;A. Milic;D. W. Miller;C. Mills;A. Milov;D. A. Milstead;D. Milstein;A. A. Minaenko;I. A. Minashvili;A. I. Mincer;B. Mindur;M. Mineev;Y. Ming;L. M. Mir;G. Mirabelli;T. Mitani;J. Mitrevski;V. A. Mitsou;S. Mitsui;A. Miucci;P. S. Miyagawa;J. U. Mjörnmark;T. Moa;K. Mochizuki;S. Mohapatra;W. Mohr;S. Molander;R. Moles-Valls;K. Mönig;C. Monini;J. Monk;E. Monnier;J. Montejo Berlingen;F. Monticelli;S. Monzani;R. W. Moore;A. Moraes;N. Morange;D. Moreno;M. Moreno Llácer;P. Morettini;M. Morgenstern;M. Morii;S. Moritz;A. K. Morley;G. Mornacchi;J. D. Morris;L. Morvaj;H. G. Moser;M. Mosidze;J. Moss;K. Motohashi;R. Mount;E. Mountricha;S. V. Mouraviev;E. J. W. Moyse;S. Muanza;R. D. Mudd;F. Mueller;J. Mueller;K. Mueller;T. Mueller;T. Mueller;D. Muenstermann;Y. Munwes;J. A. Murillo Quijada;W. J. Murray;H. Musheghyan;E. Musto;A. G. Myagkov;M. Myska;O. Nackenhorst;J. Nadal;K. Nagai;R. Nagai;Y. Nagai;K. Nagano;A. Nagarkar;Y. Nagasaka;M. Nagel;A. M. Nairz;Y. Nakahama;K. Nakamura;T. Nakamura;I. Nakano;H. Namasivayam;G. Nanava;R. Narayan;T. Nattermann;T. Naumann;G. Navarro;R. Nayyar;H. A. Neal;P. Yu. Nechaeva;T. J. Neep;P. D. Nef;A. Negri;G. Negri;M. Negrini;S. Nektarijevic;A. Nelson;T. K. Nelson;S. Nemecek;P. Nemethy;A. A. Nepomuceno;M. Nessi;M. S. Neubauer;M. Neumann;R. M. Neves;P. Nevski;P. R. Newman;D. H. Nguyen;R. B. Nickerson;R. Nicolaidou;B. Nicquevert;J. Nielsen;N. Nikiforou;A. Nikiforov;V. Nikolaenko;I. Nikolic-Audit;K. Nikolics;K. Nikolopoulos;P. Nilsson;Y. Ninomiya;A. Nisati;R. Nisius;T. Nobe;L. Nodulman;M. Nomachi;I. Nomidis;S. Norberg;M. Nordberg;O. Novgorodova;S. Nowak;M. Nozaki;L. Nozka;K. Ntekas;G. Nunes Hanninger;T. Nunnemann;E. Nurse;F. Nuti;B. J. O’Brien;F. O’grady;D. C. O’Neil;V. O’Shea;F. G. Oakham;H. Oberlack;T. Obermann;J. Ocariz;A. Ochi;M. I. Ochoa;S. Oda;S. Odaka;H. Ogren;A. Oh;S. H. Oh;C. C. Ohm;H. Ohman;W. Okamura;H. Okawa;Y. Okumura;T. Okuyama;A. Olariu;A. G. Olchevski;S. A. Olivares Pino;D. Oliveira Damazio;E. Oliver Garcia;A. Olszewski;J. Olszowska;A. Onofre;P. U. E. Onyisi;C. J. Oram;M. J. Oreglia;Y. Oren;D. Orestano;N. Orlando;C. Oropeza Barrera;R. S. Orr;B. Osculati;R. Ospanov;G. Otero y Garzon;H. Otono;M. Ouchrif;E. A. Ouellette;F. Ould-Saada;A. Ouraou;K. P. Oussoren;Q. Ouyang;A. Ovcharova;M. Owen;V. E. Ozcan;N. Ozturk;K. Pachal;A. Pacheco Pages;C. Padilla Aranda;M. Pagáčová;S. Pagan Griso;E. Paganis;C. Pahl;F. Paige;P. Pais;K. Pajchel;G. Palacino;S. Palestini;M. Palka;D. Pallin;A. Palma;J. D. Palmer;Y. B. Pan;E. Panagiotopoulou;J. G. Panduro Vazquez;P. Pani;N. Panikashvili;S. Panitkin;D. Pantea;L. Paolozzi;Th. D. Papadopoulou;K. Papageorgiou;A. Paramonov;D. Paredes Hernandez;M. A. Parker;F. Parodi;J. A. Parsons;U. Parzefall;E. Pasqualucci;S. Passaggio;A. Passeri;F. Pastore;Fr. Pastore;G. Pásztor;S. Pataraia;N. D. Patel;J. R. Pater;S. Patricelli;T. Pauly;J. Pearce;M. Pedersen;S. Pedraza Lopez;R. Pedro;S. V. Peleganchuk;D. Pelikan;H. Peng;B. Penning;J. Penwell;D. V. Perepelitsa;E. Perez Codina;M. T. Pérez García-Estañ;V. Perez Reale;L. Perini;H. Pernegger;R. Perrino;R. Peschke;V. D. Peshekhonov;K. Peters;R. F. Y. Peters;B. A. Petersen;T. C. Petersen;E. Petit;A. Petridis;C. Petridou;E. Petrolo;F. Petrucci;N. E. Pettersson;R. Pezoa;P. W. Phillips;G. Piacquadio;E. Pianori;A. Picazio;E. Piccaro;M. Piccinini;R. Piegaia;D. T. Pignotti;J. E. Pilcher;A. D. Pilkington;J. Pina;M. Pinamonti;A. Pinder;J. L. Pinfold;A. Pingel;B. Pinto;S. Pires;M. Pitt;C. Pizio;L. Plazak;M. -A. Pleier;V. Pleskot;E. Plotnikova;P. Plucinski;S. Poddar;F. Podlyski;R. Poettgen;L. Poggioli;D. Pohl;M. Pohl;G. Polesello;A. Policicchio;R. Polifka;A. Polini;C. S. Pollard;V. Polychronakos;K. Pommès;L. Pontecorvo;B. G. Pope;G. A. Popeneciu;D. S. Popovic;A. Poppleton;X. Portell Bueso;S. Pospisil;K. Potamianos;I. N. Potrap;C. J. Potter;C. T. Potter;G. Poulard;J. Poveda;V. Pozdnyakov;P. Pralavorio;A. Pranko;S. Prasad;R. Pravahan;S. Prell;D. Price;J. Price;L. E. Price;D. Prieur;M. Primavera;M. Proissl;K. Prokofiev;F. Prokoshin;E. Protopapadaki;S. Protopopescu;J. Proudfoot;M. Przybycien;H. Przysiezniak;E. Ptacek;D. Puddu;E. Pueschel;D. Puldon;M. Purohit;P. Puzo;J. Qian;G. Qin;Y. Qin;A. Quadt;D. R. Quarrie;W. B. Quayle;M. Queitsch-Maitland;D. Quilty;A. Qureshi;V. Radeka;V. Radescu;S. K. Radhakrishnan;P. Radloff;P. Rados;F. Ragusa;G. Rahal;S. Rajagopalan;M. Rammensee;A. S. Randle-Conde;C. Rangel-Smith;K. Rao;F. Rauscher;T. C. Rave;T. Ravenscroft;M. Raymond;A. L. Read;N. P. Readioff;D. M. Rebuzzi;A. Redelbach;G. Redlinger;R. Reece;K. Reeves;L. Rehnisch;H. Reisin;M. Relich;C. Rembser;H. Ren;Z. L. Ren;A. Renaud;M. Rescigno;S. Resconi;O. L. Rezanova;P. Reznicek;R. Rezvani;R. Richter;M. Ridel;P. Rieck;J. Rieger;M. Rijssenbeek;A. Rimoldi;L. Rinaldi;E. Ritsch;I. Riu;F. Rizatdinova;E. Rizvi;S. H. Robertson;A. Robichaud-Veronneau;D. Robinson;J. E. M. Robinson;A. Robson;C. Roda;L. Rodrigues;S. Roe;O. Røhne;S. Rolli;A. Romaniouk;M. Romano;E. Romero Adam;N. Rompotis;M. Ronzani;L. Roos;E. Ros;S. Rosati;K. Rosbach;M. Rose;P. Rose;P. L. Rosendahl;O. Rosenthal;V. Rossetti;E. Rossi;L. P. Rossi;R. Rosten;M. Rotaru;I. Roth;J. Rothberg;D. Rousseau;C. R. Royon;A. Rozanov;Y. Rozen;X. Ruan;F. Rubbo;I. Rubinskiy;V. I. Rud;C. Rudolph;M. S. Rudolph;F. Rühr;A. Ruiz-Martinez;Z. Rurikova;N. A. Rusakovich;A. Ruschke;J. P. Rutherfoord;N. Ruthmann;Y. F. Ryabov;M. Rybar;G. Rybkin;N. C. Ryder;A. F. Saavedra;S. Sacerdoti;A. Saddique;I. Sadeh;H. F. -W. Sadrozinski;R. Sadykov;F. Safai Tehrani;H. Sakamoto;Y. Sakurai;G. Salamanna;A. Salamon;M. Saleem;D. Salek;P. H. Sales De Bruin;D. Salihagic;A. Salnikov;J. Salt;D. Salvatore;F. Salvatore;A. Salvucci;A. Salzburger;D. Sampsonidis;A. Sanchez;J. Sánchez;V. Sanchez Martinez;H. Sandaker;R. L. Sandbach;H. G. Sander;M. P. Sanders;M. Sandhoff;T. Sandoval;C. Sandoval;R. Sandstroem;D. P. C. Sankey;A. Sansoni;C. Santoni;R. Santonico;H. Santos;I. Santoyo Castillo;K. Sapp;A. Sapronov;J. G. Saraiva;B. Sarrazin;G. Sartisohn;O. Sasaki;Y. Sasaki;G. Sauvage;E. Sauvan;P. Savard;D. O. Savu;C. Sawyer;L. Sawyer;D. H. Saxon;J. Saxon;C. Sbarra;A. Sbrizzi;T. Scanlon;D. A. Scannicchio;M. Scarcella;V. Scarfone;J. Schaarschmidt;P. Schacht;D. Schaefer;R. Schaefer;S. Schaepe;S. Schaetzel;U. Schäfer;A. C. Schaffer;D. Schaile;R. D. Schamberger;V. Scharf;V. A. Schegelsky;D. Scheirich;M. Schernau;M. I. Scherzer;C. Schiavi;J. Schieck;C. Schillo;M. Schioppa;S. Schlenker;E. Schmidt;K. Schmieden;C. Schmitt;S. Schmitt;B. Schneider;Y. J. Schnellbach;U. Schnoor;L. Schoeffel;A. Schoening;B. D. Schoenrock;A. L. S. Schorlemmer;M. Schott;D. Schouten;J. Schovancova;S. Schramm;M. Schreyer;C. Schroeder;N. Schuh;M. J. Schultens;H. -C. Schultz-Coulon;H. Schulz;M. Schumacher;B. A. Schumm;Ph. Schune;C. Schwanenberger;A. Schwartzman;Ph. Schwegler;Ph. Schwemling;R. Schwienhorst;J. Schwindling;T. Schwindt;M. Schwoerer;F. G. Sciacca;E. Scifo;G. Sciolla;W. G. Scott;F. Scuri;F. Scutti;J. Searcy;G. Sedov;E. Sedykh;S. C. Seidel;A. Seiden;F. Seifert;J. M. Seixas;G. Sekhniaidze;S. J. Sekula;K. E. Selbach;D. M. Seliverstov;G. Sellers;N. Semprini-Cesari;C. Serfon;L. Serin;L. Serkin;T. Serre;R. Seuster;H. Severini;T. Sfiligoj;F. Sforza;A. Sfyrla;E. Shabalina;M. Shamim;L. Y. Shan;R. Shang;J. T. Shank;M. Shapiro;P. B. Shatalov;K. Shaw;C. Y. Shehu;P. Sherwood;L. Shi;S. Shimizu;C. O. Shimmin;M. Shimojima;M. Shiyakova;A. Shmeleva;M. J. Shochet;D. Short;S. Shrestha;E. Shulga;M. A. Shupe;S. Shushkevich;P. Sicho;O. Sidiropoulou;D. Sidorov;A. Sidoti;F. Siegert;Dj. Sijacki;J. Silva;Y. Silver;D. 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2014-01-01
Abstract
ATLAS measurements of the azimuthal anisotropy in lead–lead collisions at √sNN = 2.76 TeV are shown using a dataset of approximately 7µb−1 collected at the LHC in 2010. The measurements are performed for charged particles with transverse momenta 0.5 < pT < 20 GeV and in the pseudorapidity range |η| < 2.5. The anisotropy is characterized by the Fourier coefficients, vn, of the charged-particle azimuthal angle distribution for n = 2–4. The Fourier coef- ficients are evaluated using multi-particle cumulants calculated with the generating function method. Results on the transverse momentum, pseudorapidity and centrality dependence of the vn coefficients are presented. The elliptic flow, v2, is obtained from the two-, four-, six- and eight-particle cumulants while higher-order coefficients, v3 and v4, are determined with two- and four-particle cumulants. Flow harmonics vn measured with four-particle cumulants are significantly reduced compared to the measurement involving two-particle cumulants. A comparison to vn measurements obtained using different analysis methods and previously reported by the LHC experiments is also shown. Results of measurements of flow fluctuations evaluated with multiparticle cumulants are shown as a function of transverse momentum and the collision centrality. Models of the initial spatial geometry and its fluctuations fail to describe the flow fluctuations measurements.
Aad, G., Abbott, B., Abdallah, J., Abdel Khalek, S., Abdinov, O., Aben, R., et al. (2014). Measurement of flow harmonics with multi-particle cumulants in Pb plus Pb collisions at root(NN)-N-S=2.76 TeV with the ATLAS detector. THE EUROPEAN PHYSICAL JOURNAL. C, PARTICLES AND FIELDS, 74(11), 1-28 [10.1140/epjc/s10052-014-3157-z].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11590/116251
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simulazione ASN
Il report seguente simula gli indicatori relativi alla propria produzione scientifica in relazione alle soglie ASN 2023-2025 del proprio SC/SSD. Si ricorda che il superamento dei valori soglia (almeno 2 su 3) è requisito necessario ma non sufficiente al conseguimento dell'abilitazione. La simulazione si basa sui dati IRIS e sugli indicatori bibliometrici alla data indicata e non tiene conto di eventuali periodi di congedo obbligatorio, che in sede di domanda ASN danno diritto a incrementi percentuali dei valori. La simulazione può differire dall'esito di un’eventuale domanda ASN sia per errori di catalogazione e/o dati mancanti in IRIS, sia per la variabilità dei dati bibliometrici nel tempo. Si consideri che Anvur calcola i valori degli indicatori all'ultima data utile per la presentazione delle domande.
La presente simulazione è stata realizzata sulla base delle specifiche raccolte sul tavolo ER del Focus Group IRIS coordinato dall’Università di Modena e Reggio Emilia e delle regole riportate nel DM 589/2018 e allegata Tabella A. Cineca, l’Università di Modena e Reggio Emilia e il Focus Group IRIS non si assumono alcuna responsabilità in merito all’uso che il diretto interessato o terzi faranno della simulazione. Si specifica inoltre che la simulazione contiene calcoli effettuati con dati e algoritmi di pubblico dominio e deve quindi essere considerata come un mero ausilio al calcolo svolgibile manualmente o con strumenti equivalenti.