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The Multi-Purpose Detector (MPD) at NICA collider has a substantial discovery potential concerning the exploration of the QCD phase diagram in the region of high net-baryon densities and moderate temperatures. The anisotropic transverse…

High Energy Physics - Experiment · Physics 2019-05-01 Petr Parfenov , Arkadiy Taranenko , Ilya Selyuzhenkov , Peter Senger

The goal of the Multi-Purpose Detector (MPD) experiment at NICA collider is to explore the QCD phase diagram of strongly interacting matter produced in nucleus-nucleus collisions at $\sqrt{s_{NN}}=4-11$ GeV. The performance of MPD detector…

Nuclear Experiment · Physics 2022-09-21 Vinh Ba Luong , Dim Idrisov , Petr Parfenov , Arkadiy Taranenko , Alexander Demanov

Studying the properties of strongly-interacting matter at high relative baryon densities is one of the key scientific goals of the MPD (Multi-Purpose Detector) experiment at the NICA accelerator complex. The performance of measuring the…

High Energy Physics - Experiment · Physics 2024-12-10 P. Parfenov , M. Mamaev , A. Taranenko

The main goal of the future MPD experiment at NICA is to explore the QCD phase diagram in the region of highly compressed and hot baryonic matter in the energy range corresponding to the highest chemical potential. Properties of such dense…

High Energy Physics - Experiment · Physics 2017-12-29 P. Parfenov , I. Selyuzhenkov , A. Taranenko , A. Truttse

Measurements of anisotropic flow in heavy-ion collisions provide evidence for the creation of strongly interacting matter which appears to behave as an almost ideal fluid. Anisotropic flow signals the presence of multiple interactions and…

Nuclear Experiment · Physics 2015-05-28 Ante Bilandzic

The Multi-Purpose Detector (MPD) is one of the three experiments of the Nuclotron Ion Collider-fAcility (NICA) complex, which is currently under construction at the Joint Institute for Nuclear Research in Dubna. With collisions of heavy…

Nuclear Experiment · Physics 2025-05-15 MPD Collaboration

The analysis of anisotropic flow of particles created in high energy heavy-ion collisions gives insight into the early stage of these reactions. Measurements of directed flow (v1), elliptic flow (v2) and flow of 4th and 6th order (v4 and…

Nuclear Experiment · Physics 2019-08-14 Markus D. Oldenburg

Within a (3+1)D viscous hydrodynamic model we compute anisotropic flow in small system collisions as performed at the Relativistic Heavy Ion Collider and measured by the STAR and PHENIX Collaborations. We emphasize the importance of the…

Nuclear Theory · Physics 2023-12-21 Sangwook Ryu , Bjoern Schenke , Chun Shen , Wenbin Zhao

Anisotropic flow measurements in heavy-ion collisions provide important information on the properties of hot and dense matter. These measurements are based on analysis of azimuthal correlations and might be biased by contributions from…

Nuclear Experiment · Physics 2011-10-18 Ante Bilandzic , Raimond Snellings , Sergei Voloshin

The Multi-Purpose Detector (MPD) is to be installed at the Nuclotron Ion Collider fAcility (NICA) of the Joint Institute for Nuclear Research (JINR). Its main goal is to study the phase diagram of the strongly interacting matter produced in…

A general-purpose detector for studying heavy-ion collisions at the NICA facility is under construction at JINR. The NICA/MPD physics program, basic design requirements, and the MPD experimental setup will be described. Results of detector…

Nuclear Experiment · Physics 2013-12-05 V. I Kolesnikov , A. I. Zinchenko

Collective anisotropic flow, where particles are correlated over the entire event, is a prominent phenomenon in relativistic heavy-ion collisions and is sensitive to the properties of the matter created in those collisions. It is often…

Nuclear Experiment · Physics 2024-12-19 Yicheng Feng , Fuqiang Wang

An experimental overview of anisotropic flow measurements and their ability to probe the properties and the nature of the system created in ultra-relativistic hadron collisions is given in these proceedings. The aim is to discuss the…

Nuclear Experiment · Physics 2021-02-03 Katarína Krízková Gajdosová

We report the first results of elliptic ($v_2$), triangular ($v_3$) and quadrangular flow ($v_4$) of charged particles in Pb-Pb collisions at $\sqrt{s_{\rm NN}}=5.02$ TeV with the ALICE detector at the CERN Large Hadron Collider. The…

Nuclear Experiment · Physics 2016-12-13 ALICE Collaboration

Measurements of anisotropic flow in heavy-ion collisions provide insight into the early stage of the system's evolution. This proceedings presents directed and elliptic flow for Au+Au collisions at 39, 11.5 and 7.7 GeV, and for Cu+Cu at…

Nuclear Experiment · Physics 2015-05-30 Yadav Pandit

The measurement of anisotropic flow of identified particles, including charged pion, kaon, (anti-)proton as well as strange and multi-strange particles (${\rm K_{S}^{0}}$, ${\rm \Lambda}$, ${\rm \Xi}$ and ${\rm \Omega}$) are measured in…

Nuclear Experiment · Physics 2019-08-13 You Zhou

Anisotropic flow phenomena is a key probe of the existence of Quark-Gluon Plasma. Several new observable associated with correlations between anisotropic flow harmonics are developed, which are expected to be sensitive to the initial…

Nuclear Experiment · Physics 2016-07-20 You Zhou

Anisotropic flow measurements play a crucial role in understanding the physics and bulk properties of the system created in heavy ion collisions. In this talk I briefly review the most important results obtained so far, recent developments…

Nuclear Experiment · Physics 2008-11-26 Sergei A. Voloshin

The elliptic, $v_2$, triangular, $v_3$, and quadrangular, $v_4$, azimuthal anisotropic flow coefficients are measured for unidentified charged particles, pions and (anti-)protons in Pb-Pb collisions at $\sqrt{s_{\rm NN}} = 2.76$ TeV with…

Nuclear Experiment · Physics 2016-06-24 ALICE Collaboration

The Nuclotron-base Ion Collider fAcility (NICA) is under construction at the Joint Institute for Nuclear Research (JINR), with commissioning of the facility expected in late 2022. The Multi-Purpose Detector (MPD) has been designed to…

Instrumentation and Detectors · Physics 2023-01-31 MPD Collaboration , V. Abgaryan , R. Acevedo Kado , S. V. Afanasyev , G. N. Agakishiev , E. Alpatov , G. Altsybeev , M. Alvarado Hernández , S. V. Andreeva , T. V. Andreeva , E. V. Andronov , N. V. Anfimov , A. A. Aparin , V. I. Astakhov , E. Atkin , T. Aushev , G. S. Averichev , A. V. Averyanov , A. Ayala , V. A. Babkin , T. Babutsidze , I. A. Balashov , A. Bancer , M. Yu. Barabanov , D. A. Baranov , N. Baranova , N. Barbashina , A. E. Baskakov , P. N. Batyuk , A. G. Bazhazhin , D. Baznat , M. Baznat , S. N. Bazylev , L. G. E. Beltran , A. V. Belyaev , S. E. Belyaev , E. V. Belyaeva , V. Benda , M. Bielewicz , W. Bietenholz , D. Blaschke , D. Blau , G. Bogdanova , D. N. Bogoslovsky , I. V. Boguslavsky , E. Boos , A. Botvina , L. Bravina , S. A. Bulychjov , M. G. Buryakov , A. V. Butenko , A. V. Butorin , S. G. Buzin , A. Bychkov , A. V. Bychkov , R. R. Cabellero , D. Chaires Arciniega , V. V. Chalyshev , W. Chen , Z. Chen , V. A. Cheplakova , V. F. Chepurnov , V. V. Chepurnov , M. Cheremnova , G. A. Cheremukhina , L. Chlad , P. Chudoba , P. V. Chumakov , E. Cuautle , M. Czarnynoga , B. Dabrowska , D. Dąbrowski , A. Demanov , D. V. Dementyev , Z. Deng , A. V. Dmitriev , V. Kh. Dodokhov , E. V. Dolbilina , A. G. Dolbilov , I. Domínguez , W. Dominik , D. E. Donets , V. Dronik , A. Yu. Dubrovin , A. Dudziński , P. Dulov , N. V. Dunin , V. B. Dunin , V. Dyatlov , V. F. Dydyshko , A. A. Efremov , D. S. Egorov , V. V. Elsha , A. E. Emelyanov , N. E. Emelyanov , V. G. Ermakova , G. Eyyubova , D. Fang , O. V. Fateev , O. Fedin , Yu. I. Fedotov , A. A. Fedyunin , C. Feng , S. Feng , G. A. Feofilov , I. A. Filippov , T. Fischer , K. Formenko , M. A. Gaganova , T. T. Gandzhelashvili , O. P. Gavrishchuk , N. Geraksiev , S. E. Gerasimov , K. V. Gertsenberger , O. Golosov , V. M. Golovatyuk , M. Golubeva , I. Goncharov , N. V. Gorbunov , M. Grabowski , M. Grodzicka-Kobyłka , K. Grodzicki , J. Grzyb , F. Guber , A. Guirado , A. V. Guskov , V. Guzey , W. He , L. A. Hernández Rosas , M. Huang , Y. Huang , R. Idczak , D. Idrisov , S. N. Igolkin , M. Ilieva , A. Yu. Isupov , D. Ivanishchev , A. V. Ivanov , O. Ivanytskyi , A. Ivashkin , A. Izvestnyy , E. Jaworska , J. Jiao , I. Kadochnikov , S. I. Kakurin , P. Kankiewicz , M. N. Kapishin , D. Karmanov , N. Karpushkin , L. A. Kartashova , E. Kashirin , G. Kasprowicz , Yu. Kasumov , A. O. Kechechyan , G. D. Kekelidze , V. D. Kekelidze , A. Khanzadeev , P. Kharlamov , O. A. Khilinova , G. G. Khodzhibagiyan , N. Khosravi , A. Khvorostukhin , Y. Khyzhniak , V. Kikvadze , V. A. Kireyeu , Yu. T. Kiryushin , I. S. Kiryutin , A. Kisiel , A. Klyuev , V. Klyukhin , L. Kochenda , O. Kodolova , V. I. Kolesnikov , A. Kolozhvari , V. G. Komarov , V. P. Kondratiev , M. Korolev , V. Korotkikh , D. Kotov , S. Kovalenko , V. N. Kovalenko , S. Kowalski , N. A. Kozlenko , M. Krakowiak , V. A. Kramarenko , L. M. Krasnova , P. Kravchov , Yu. F. Krechetov , I. V. Kruglova , A. V. Krylov , V. Krylov , E. Kryshen , A. Kryukov , A. Kubankin , A. Kugler , M. Kuich , S. I. Kukarnikov , S. N. Kuklin , V. Kukulin , S. Kuleshov , E. A. Kulikov , V. V. Kulikov , A. Kurepin , S. Kushpil , V. S. Kuzmin , J. Kvita , D. Lanskoy , N. A. Lashmanov , M. Ławryńczuk , T. V. Lazareva , R. Lednicky , S. Li , Z. Li , A. G Litvinenko , E. I. Litvinenko , G. N. Litvinova , D. Liu , F. Liu , A. N. Livanov , V. I. Lobanov , Yu. Yu. Lobanov , S. P. Lobastov , I. Lokhtin , P. Lu , Yu. R. Lukstinsh , B. V. Luong , B. Łysakowski , Y. Ma , A. Machavariani , D. T. Madigozhin , B. Maksiak , V. I. Maksimenkova , A. I. Malakhov , M. Malayev , I. Maldonado , J. C. Maldonado , I. V. Malikov , L. Malinina , N. A. Maltsev , N. V. Maria , M. Shopova , M. A. Martemianov , M. Maslan , M. A. Matsyuk , T. Matulewicz , D. G. Melnikov , M. Merkin , S. P. Merts , I. N. Meshkov , S. Mianowski , I. I. Migulina , K. R. Mikhaylov , M. Milewicz-Zalewska , Yu. I. Minaev , N. A. Molokanova , E. Moreno-Barbosa , S. Morozov , A. A. Moshkin , I. V. Moshkovsky , A. E. Moskovsky , S. A. Movchan , A. A. Mudrokh , K. A. Mukhin , Yu. A. Murin , Zh. Zh. Musul'manbekov , V. V. Myalkovsky , D. Myktybekov , L. L. Narvaez Paredes , D. K. Nauruzbaev , E. N. Nazarova , A. V. Nechaevsky , D. G. Nesterov , M. Nie , P. A. Nieto-Marín , G. Nigmatkulov , V. A. Nikitin , M. Nioradze , X. Niu , W. Nowak , L. Nozka , I. A. Oleks , A. G. Olshevsky , O. E. Orlov , P. Parfenov , S. S. Parzhitsky , M. E. Patiño , V. A. Pavlyukevich , V. A. Penkin , V. F. Peresedov , D. Peresunko , D. V. Peshekhonov , V. A. Petrov , S. Petrushanko , O. Petukhov , K. Piasecki , D. V. Pichugina , A. Piloyan , A. V. Pilyar , S. M. Piyadin , S. Plamowski , M. Platonova , J. Pluta , A. E. Potanina , Yu. K. Potrebenikov , K. Poźniak , D. S. Prokhorova , N. A. Prokofiev , F. Protoklitow , A. Prozorov , D. Pszczel , A. M Puchkov , N. Pukhaeva , S. Puławski , A. R. Rakhmatullina , L. F. Rebolledo Herrera , V. Z. Reyna-Ortiz , V. Riabov , Yu. Riabov , N. O. Ridinger , V. Rikhvitsky , M. Rodriguez-Cahuantzi , O. V. Rogachevsky , V. Yu. Rogov , P. Rokita , G. Romanenko , R. Romaniuk , A. Romanova , K. Rosłon , T. Rossler , E. F. Rozas Calderon , I. A. Rufanov , M. M. Rumyantsev , A. Rustamov , A. A. Rybakov , M. Rybczyński , D. Rybka , A. A. Rymshina , J. Rzadkiewicz , Z. Ya. -O. Sadygov , V. A. Samsonov , V. S. Sandul , R. Sattarov , A. A. Savenkov , K. Schmidt , S. S. Seballos , S. A. Sedykh , I. Selyuzhenkov , T. V. Semchukova , A. Yu. Semenov , I. A. Semenova , S. V. Sergeev , N. A. Sergeeva , E. V. Serochkin , A. Yu. Seryakov , A. V. Shabunov , R. Shanidze , L. Shcheglova , B. G. Shchinov , C. Shen , Y. Shen , A. N. Sherbakov , A. D. Sheremetyev , A. I. Sheremetyeva , R. A. Shindin , A. V. Shipunov , M. O. Shitenkov , D. K. Shtejer , U. Shukla , A. A. Shunko , A. V. Shutov , V. B. Shutov , A. O. Sidorin , I. Skwira-Chalot , I. V. Slepnev , V. M. Slepnev , I. P. Slepov , Yu. A. Solnyshkin , A. Solomin , T. Solovyeva , A. S. Sorin , T. Starecki , G. Stefanek , J. Stepaniak , E. A. Streletskaya , M. Strikhanov , T. A. Strizh , A. Strizhak , N. V. Sukhov , S. I. Sukhovarov , X. Sun , N. N. Surkov , D. Suvarieva , V. L. Svalov , L. Świderski , A. Syntfeld-Każuch , T. Szcześniak , J. Szewiński , Z. Tang , A. Taranenko , N. A. Tarasov , V. Tcholakov , G. Tejeda-Muñoz , M. E. Tejeda-Yeomans , A. V. Terletskiy , O. V. Teryaev , V. V. Tikhomirov , A. A. Timoshenko , G. P. Tkachev , V. D. Toneev , N. D. Topilin , T. Traczyk , T. Tretyakova , A. V. Trubnikov , G. V. Trubnikov , I. A. Tyapkin , S. Yu. Udovenko , P. A. Ulloa Poblete , M. Urbaniak , V. Urumov , L. Valenzuela-Cazares , F. F. Valiev , V. A. Vasendina , I. N. Vasiliev , A. Vasilyev , V. V. Vechernin , S. V. Vereshchagin , N. N. Vladimirova , N. V. Vlasov , A. S. Vodopyanov , K. Vokhmyanina , V. Volkov , V. Volkov , O. A. Volodina , A. A. Voronin , V. Voronyuk , F. Wang , J. Wang , X. Wang , Y. Wang , Y. Wang , Y. Wang , Y. Wang , P. Wieczorek , D. Wielanek , Z. Włodarczyk , K. Wójcik , K. Wu , Z. Xiao , Q. Xu , C. Yang , H. Yang , Q. Yang , G. A. Yarygin , L. Yordanova , T. Yu , Z. Yuan , V. I. Yurevich , W. Zabołotny , E. Zabrodin , M. V. Zaitseva , J. A. Zamora Saa , N. I. Zamyatin , S. A. Zaporozhets , A. K. Zarochentsev , C. H. Zepeda-Fernández , W. Zha , M. Zhalov , Y. Zhang , Y. Zhang , Z. Zhang , C. Zhao , V. I. Zherebchevsky , V. N. Zhezher , C. Zhong , W. Zhou , X. Zhu , X. Zhu , A. I. Zinchenko , D. A. Zinchenko
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