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Related papers: e+A physics at a future Electron-Ion Collider

200 papers

The Future Circular Collider in the $\mathrm{e^{+}e^{-}}$ configuration offers the opportunity to significantly improve SM measurements with dedicated runs at the Z-pole, WW threshold, ZH (240 GeV), and $\mathrm{t}\bar{\mathrm{t}}$…

High Energy Physics - Experiment · Physics 2022-08-18 Eduardo Ploerer

One of the fundamental goals of the PHENIX experiment is to understand the structure of cold nuclear matter, since this serves as the initial state for heavy-ion collisions. Knowing the initial state is vital for interpreting measurements…

Nuclear Experiment · Physics 2012-10-10 Mickey Chiu

The Large Hadron Electron Collider (LHeC) project is the proposal to use the existing LHC proton/ion beams and construct a new electron beam line to perform high-energy electron-proton/ion collisions. In this talk, we consider some of the…

High Energy Physics - Phenomenology · Physics 2015-10-02 Ilkka Helenius , Hannu Paukkunen , Néstor Armesto

A comprehensive review of physics at an e+e- Linear Collider in the energy range of sqrt{s}=92 GeV--3 TeV is presented in view of recent and expected LHC results, experiments from low energy as well as astroparticle physics.The report…

One of the main goals of future electron-ion colliders is to improve our understanding of the structure of hadrons. In this letter, we study the exclusive $\eta_c$ production by $\gamma^{*} \gamma$ interactions in $eA$ collisions and…

High Energy Physics - Phenomenology · Physics 2023-08-09 Izabela Babiarz , Victor P. Goncalves , Wolfgang Schäfer , Antoni Szczurek

The physics case for electron-positron beams at the Future Circular Collider (FCC-ee) is succinctly summarized. The FCC-ee core program involves $e^+e^-$ collisions at $\sqrt{s}$ = 90, 160, 240, and 350 GeV with multi-ab$^{-1}$ integrated…

High Energy Physics - Experiment · Physics 2016-01-26 David d'Enterria

There are currently several proposals to build a high-luminosity electron-ion collider, to study the spin structure of matter and measure parton densities in heavy nuclei, and to search for gluon saturation and new phenomena like the…

Accelerator Physics · Physics 2015-06-22 Spencer R. Klein

Long term plans for the investigation of the quark and gluon structure of matter have for some time focussed on the possibility of an electron-ion collider, with the nuclear physics communities associated with JLab and BNL being…

High Energy Physics - Experiment · Physics 2009-07-30 Anthony W. Thomas

This study presents new insights into gluon transverse momentum distributions through nonextensive statistical mechanics, addressing their implications for QCD phenomenology. The saturation physics and scaling laws present in high energy…

High Energy Physics - Phenomenology · Physics 2025-01-10 Lucas Soster Moriggi , Magno Valerio Trindade Machado

Due to gluon saturation, the growth of the inelastic nucleon-nucleon cross section with increasing collision energy sqrt(s) results in a broadening of the nucleon's density distribution in position space. This leads to a natural smoothing…

Nuclear Theory · Physics 2012-10-08 Ulrich W. Heinz , J. Scott Moreland

The forthcoming p+Pb run at the LHC will provide crucial in formation on the initial state effects of heavy ion collisions and on the gluon saturation phenomena. In turn, most of the saturation inspired phenomenology in heavy ion collisions…

High Energy Physics - Phenomenology · Physics 2012-08-31 Paloma Quiroga-Arias , Javier L. Albacete , J. Guilherme Milhano , Juan Rojo

The rate and corresponding gluon jet energy distribution for the process $e^+e^- \to t\bar tg$ are sensitive to the presence of anomalous dipole-like couplings of the top to the photon and $Z$ at the production vertex as well as to the…

High Energy Physics - Phenomenology · Physics 2011-03-02 Thomas G. Rizzo

We investigate baryon transport in relativistic heavy-ion collisions at energies reached at the CERN Super Proton Synchrotron, BNL Relativistic Heavy-Ion Collider (RHIC), and CERN LHC in the model of saturation. An analytical scaling law is…

High Energy Physics - Phenomenology · Physics 2015-05-13 Yacine Mehtar-Tani , Georg Wolschin

This report describes the physics case, the resulting detector requirements, and the evolving detector concepts for the experimental program at the Electron-Ion Collider (EIC). The EIC will be a powerful new high-luminosity facility in the…

Instrumentation and Detectors · Physics 2023-04-24 R. Abdul Khalek , A. Accardi , J. Adam , D. Adamiak , W. Akers , M. Albaladejo , A. Al-bataineh , M. G. Alexeev , F. Ameli , P. Antonioli , N. Armesto , W. R. Armstrong , M. Arratia , J. Arrington , A. Asaturyan , M. Asai , E. C. Aschenauer , S. Aune , H. Avagyan , C. Ayerbe Gayoso , B. Azmoun , A. Bacchetta , M. D. Baker , F. Barbosa , L. Barion , K. N. Barish , P. C. Barry , M. Battaglieri , A. Bazilevsky , N. K. Behera , F. Benmokhtar , V. V. Berdnikov , J. C. Bernauer , V. Bertone , S. Bhattacharya , C. Bissolotti , D. Boer , M. Boglione , M. Bondì , P. Boora , I. Borsa , F. Bossù , G. Bozzi , J. D. Brandenburg , N. Brei , A. Bressan , W. K. Brooks , S. Bufalino , M. H. S. Bukhari , V. Burkert , N. H. Buttimore , A. Camsonne , A. Celentano , F. G. Celiberto , W. Chang , C. Chatterjee , K. Chen , T. Chetry , T. Chiarusi , Y. -T. Chien , M. Chiosso , X. Chu , E. Chudakov , G. Cicala , E. Cisbani , I. C. Cloet , C. Cocuzza , P. L. Cole , D. Colella , J. L. Collins , M. Constantinou , M. Contalbrigo , G. Contin , R. Corliss , W. Cosyn , A. Courtoy , J. Crafts , R. Cruz-Torres , R. C. Cuevas , U. D'Alesio , S. Dalla Torre , D. Das , S. S. Dasgupta , C. Da Silva , W. Deconinck , M. Defurne , W. DeGraw , K. Dehmelt , A. Del Dotto , F. Delcarro , A. Deshpande , W. Detmold , R. De Vita , M. Diefenthaler , C. Dilks , D. U. Dixit , S. Dulat , A. Dumitru , R. Dupré , J. M. Durham , M. G. Echevarria , L. El Fassi , D. Elia , R. Ent , R. Esha , J. J. Ethier , O. Evdokimov , K. O. Eyser , C. Fanelli , R. Fatemi , S. Fazio , C. Fernandez-Ramirez , M. Finger , M. Finger , D. Fitzgerald , C. Flore , T. Frederico , I. Friščić , S. Fucini , S. Furletov , Y. Furletova , C. Gal , L. Gamberg , H. Gao , P. Garg , D. Gaskell , K. Gates , M. B. Gay Ducati , M. Gericke , G. Gil da Silveira , F. -X. Girod , D. I. Glazier , K. Gnanvo , V. P. Goncalves , L. Gonella , J. O. Gonzalez Hernandez , Y. Goto , F. Grancagnolo , L. C. Greiner , W. Guryn , V. Guzey , Y. Hatta , M. Hattawy , F. Hauenstein , X. He , T. K. Hemmick , O. Hen , G. Heyes , D. W. Higinbotham , A. N. Hiller Blin , T. J. Hobbs , M. Hohlmann , T. Horn , T. -J. Hou , J. Huang , Q. Huang , G. M. Huber , C. E. Hyde , G. Iakovidis , Y. Ilieva , B. V. Jacak , P. M. Jacobs , M. Jadhav , Z. Janoska , A. Jentsch , T. Jezo , X. Jing , P. G. Jones , K. Joo , S. Joosten , V. Kafka , N. Kalantarians , G. Kalicy , D. Kang , Z. B. Kang , K. Kauder , S. J. D. Kay , C. E. Keppel , J. Kim , A. Kiselev , M. Klasen , S. Klein , H. T. Klest , O. Korchak , A. Kostina , P. Kotko , Y. V. Kovchegov , M. Krelina , S. Kuleshov , S. Kumano , K. S. Kumar , R. Kumar , L. Kumar , K. Kumerički , A. Kusina , K. Kutak , Y. S. Lai , K. Lalwani , T. Lappi , J. Lauret , M. Lavinsky , D. Lawrence , D. Lednicky , C. Lee , K. Lee , S. H. Lee , S. Levorato , H. Li , S. Li , W. Li , X. Li , X. Li , W. B. Li , T. Ligonzo , H. Liu , M. X. Liu , X. Liu , S. Liuti , N. Liyanage , C. Lorcé , Z. Lu , G. Lucero , N. S. Lukow , E. Lunghi , R. Majka , Y. Makris , I. Mandjavidze , S. Mantry , H. Mäntysaari , F. Marhauser , P. Markowitz , L. Marsicano , A. Mastroserio , V. Mathieu , Y. Mehtar-Tani , W. Melnitchouk , L. Mendez , A. Metz , Z. -E. Meziani , C. Mezrag , M. Mihovilovič , R. Milner , M. Mirazita , H. Mkrtchyan , A. Mkrtchyan , V. Mochalov , V. Moiseev , M. M. Mondal , A. Morreale , D. Morrison , L. Motyka , H. Moutarde , C. Muñoz Camacho , F. Murgia , M. J. Murray , P. Musico , P. Nadel-Turonski , P. M. Nadolsky , J. Nam , P. R. Newman , D. Neyret , D. Nguyen , E. R. Nocera , F. Noferini , F. Noto , A. S. Nunes , V. A. Okorokov , F. Olness , J. D. Osborn , B. S. Page , S. Park , A. Parker , K. Paschke , B. Pasquini , H. Paukkunen , S. Paul , C. Pecar , I. L. Pegg , C. Pellegrino , C. Peng , L. Pentchev , R. Perrino , F. Petriello , R. Petti , A. Pilloni , C. Pinkenburg , B. Pire , C. Pisano , D. Pitonyak , A. A. Poblaguev , T. Polakovic , M. Posik , M. Potekhin , R. Preghenella , S. Preins , A. Prokudin , P. Pujahari , M. L. Purschke , J. R. Pybus , M. Radici , R. Rajput-Ghoshal , P. E. Reimer , M. Rinaldi , F. Ringer , C. D. Roberts , S. Rodini , J. Rojo , D. Romanov , P. Rossi , E. Santopinto , M. Sarsour , R. Sassot , N. Sato , B. Schenke , W. B. Schmidke , I. Schmidt , A. Schmidt , B. Schmookler , G. Schnell , P. Schweitzer , J. Schwiening , I. Scimemi , S. Scopetta , J. Segovia , R. Seidl , S. Sekula , K. Semenov-Tian-Shanskiy , D. Y. Shao , N. Sherrill , E. Sichtermann , M. Siddikov , A. Signori , B. K. Singh , S. Širca , K. Slifer , W. Slominski , D. Sokhan , W. E. Sondheim , Y. Song , O. Soto , H. Spiesberger , A. M. Stasto , P. Stepanov , G. Sterman , J. R. Stevens , I. W. Stewart , I. Strakovsky , M. Strikman , M. Sturm , M. L. Stutzman , M. Sullivan , B. Surrow , P. Svihra , S. Syritsyn , A. Szczepaniak , P. Sznajder , H. Szumila-Vance , L. Szymanowski , A. S. Tadepalli , J. D. Tapia Takaki , G. F. Tassielli , J. Terry , F. Tessarotto , K. Tezgin , L. Tomasek , F. Torales Acosta , P. Tribedy , A. Tricoli , Triloki , S. Tripathi , R. L. Trotta , O. D. Tsai , Z. Tu , C. Tuvè , T. Ullrich , M. Ungaro , G. M. Urciuoli , A. Valentini , P. Vancura , M. Vandenbroucke , C. Van Hulse , G. Varner , R. Venugopalan , I. Vitev , A. Vladimirov , G. Volpe , A. Vossen , E. Voutier , J. Wagner , S. Wallon , H. Wang , Q. Wang , X. Wang , S. Y. Wei , C. Weiss , T. Wenaus , H. Wennlöf , N. Wickramaarachchi , A. Wikramanayake , D. Winney , C. P. Wong , C. Woody , L. Xia , B. W. Xiao , J. Xie , H. Xing , Q. H. Xu , J. Zhang , S. Zhang , Z. Zhang , Z. W. Zhao , Y. X. Zhao , L. Zheng , Y. Zhou , P. Zurita

In this talk I'll review the present status of charged particle multiplicity measurements from heavy-ion collisions. The characteristic features of multiplicity distributions obtained in Au+Au collisions will be discussed in terms of…

Nuclear Experiment · Physics 2009-11-10 B. B. Back

We present calculations of bulk properties and multiparticle correlations in a large variety of collision systems within a hybrid formalism consisting of IP-Glasma initial conditions, MUSIC viscous relativistic hydrodynamics, and UrQMD…

Nuclear Theory · Physics 2020-10-21 Bjoern Schenke , Chun Shen , Prithwish Tribedy

A full understanding of the spacetime evolution of the QCD matter created in a heavy ion collision requires understanding the properties of the initial stages. In the weak coupling picture these are dominated by classical gluon fields,…

High Energy Physics - Phenomenology · Physics 2017-04-05 T. Lappi

Exclusive vector meson electroproduction over a broad $Q^2$ range offers a unique opportunity to probe the gluon structure of nuclei to measure nuclear shadowing, and to search for gluon saturation and/or the colored glass condensate at an…

Nuclear Experiment · Physics 2018-05-23 Michael Lomnitz

Electron Ion Collider is a future high energy facility for studies of the structure of the nucleon. Three-dimensional parton structure is one of the main goals of EIC. In momentum space Transverse Momentum Dependent Distributions (TMDs) are…

High Energy Physics - Phenomenology · Physics 2011-08-19 Alexei Prokudin

We explore the potential for extracting the longitudinal proton structure function $F_{L}$ at the future Electron-Ion Collider (EIC) through a Rosenbluth separation method. The impacts of differing assumptions on sample sizes, systematic…

High Energy Physics - Phenomenology · Physics 2024-12-23 Javier Jiménez-López , Paul R. Newman , Katarzyna Wichmann