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This report is based on a ten-week program on "Gluons and the quark sea at high-energies", which took place at the Institute for Nuclear Theory in Seattle in Fall 2010. The principal aim of the program was to develop and sharpen the science…

Nuclear Theory · Physics 2015-03-19 D. Boer , M. Diehl , R. Milner , R. Venugopalan , W. Vogelsang , A. Accardi , E. Aschenauer , M. Burkardt , R. Ent , V. Guzey , D. Hasch , K. Kumar , M. A. C. Lamont , Y. Li , W. J. Marciano , C. Marquet , F. Sabatie , M. Stratmann , F. Yuan , S. Abeyratne , S. Ahmed , C. Aidala , S. Alekhin , M. Anselmino , H. Avakian , A. Bacchetta , J. Bartels , H. BC , J. Beebe-Wang , S. Belomestnykh , I. Ben-Zvi , G. Beuf , J. Blumlein , M . Blaskiewicz , A. Bogacz , S. J. Brodsky , T. Burton , R. Calaga , X. Chang , I. O. Cherednikov , P. Chevtsov , G. A. Chirilli , C. Ciofi degli Atti , I. C. Cloet , A. Cooper-Sarkar , R. Debbe , Ya. Derbenev , A. Deshpande , F. Dominguez , A. Dumitru , R. Dupre , B. Erdelyi , C. Faroughy , S. Fazio , A. Fedotov , J. R. Forshaw , R. Geraud , K. Gallmeister , L. Gamberg , J. -H. Gao , D. Gassner , F. Gelis , G. P. Gilfoyle , G. Goldstein , K. Golec-Biernat , V. P. Goncalves , M. Gonderinger , M. Guzzi , P. Hagler , H. Hahn , L. Hammons , Y. Hao , P. He , T. Horn , W. A. Horowitz , M. Huang , A. Hutton , B. Jager , W. Jackson , A. Jain , E. C. Johnson , Z. -B. Kang , L. P. Kaptari , D. Kayran , J. Kewisch , Y. Koike , A. Kondratenko , B. Z. Kopeliovich , Y. V. Kovchegov , G. Krafft , P. Kroll , S. Kumano , K. Kumericki , T. Lappi , T. Lautenschlager , R. Li , Z. -T. Liang , V. N. Litvinenko , S. Liuti , Y. Luo , D. Muller , G. Mahler , A. Majumder , S. Manikonda , F. Marhauser , G. McIntyre , M. Meskauskas , W. Meng , A. Metz , C. B. Mezzetti , G. A. Miller , M. Minty , S. -O. Moch , V. Morozov , U. Mosel , L. Motyka , H. Moutarde , P. J. Mulders , B. Musch , P. Nadel-Turonski , P. Nadolsky , F. Olness , P. N. Ostrumov , B. Parker , B. Pasquini , K. Passek-Kumericki , A. Pikin , F. Pilat , B. Pire , H. Pirner , C. Pisano , E. Pozdeyev , A. Prokudin , V. Ptitsyn , X. Qian , J. -W. Qiu , M. Radici , A. Radyushkin , T. Rao , R. Rimmer , F. Ringer , S. Riordan , T. Rogers , J. Rojo , T. Roser , R. Sandapen , R. Sassot , T. Satogata , H. Sayed , A. Schafer , G. Schnell , P. Schweitzer , B. Sheehy , J. Skaritka , G. Soyez , M. Spata , H. Spiesberger , A. M. Stasto , N. G. Stefanis , M. Strikman , M. Sullivan , L. Szymanowski , K. Tanaka , S. Taneja , S. Tepikian , B. Terzic , Y. Than , T. Toll , D. Trbojevic , E. Tsentalovich , N. Tsoupas , K. Tuchin , J. Tuozzolo , T. Ullrich , A. Vossen , S. Wallon , G. Wang , H. Wang , X. -N. Wang , S. Webb , C. Weiss , Q. Wu , B. -W. Xiao , W. Xu , B. Yunn , A. Zelenski , Y. Zhang , J. Zhou , P. Zurita

The Electron-Ion Collider~(EIC), a forthcoming powerful high-luminosity facility, represents an exciting opportunity to explore new physics. In this article, we study the potential of the EIC to probe the coupling between axion-like…

High Energy Physics - Phenomenology · Physics 2024-03-01 Reuven Balkin , Or Hen , Wenliang Li , Hongkai Liu , Teng Ma , Yotam Soreq , Mike Williams

The Electron-Ion Collider provides a groundbreaking opportunity to study heavy pentaquarks with unprecedented precision, leveraging its high collision energy and beam spin polarization capabilities. As a representative case, we analyze…

High Energy Physics - Phenomenology · Physics 2025-03-05 In Woo Park , Sungtae Cho , Yongsun Kim , Su Houng Lee

The EIC will deliver collisions of electrons with protons and nuclei at a wide variety of energies and at luminosities up to 1000 times higher than HERA. Precise measurement of both the scattered electron and the hadronic final state is…

Instrumentation and Detectors · Physics 2024-09-04 Henry T. Klest

The proposed electron-ion collider has a rich physics program to study the internal structure of protons and heavy nuclei. This program will impose strict requirements on detector design. This paper explores how these requirements can be…

We illustrate how the future Electron-Ion Collider (EIC) can be used to discover dark bosons with masses in the $\sim$ (10~MeV -- 10~GeV) regime, having a wide range of properties. We only require that the dark bosons have a non-negligible…

High Energy Physics - Phenomenology · Physics 2025-09-05 Hooman Davoudiasl , Hongkai Liu

The International Linear Collider (ILC) and the Compact Linear Collider (CLIC) are the two options for a future high-energy, high-luminosity linear electron-positron collider. Both are expected to be built in stages, optimised for their…

High Energy Physics - Phenomenology · Physics 2020-05-01 Aleksander Filip Zarnecki

We give an outline of the anticipated physics program for a future electron ion collider. The status and prospects for construction of such a device are discussed.

High Energy Physics - Experiment · Physics 2016-10-28 Hugh E. Montgomery

The Electron Ion Collider will have two interaction regions that can be instrumented with detectors. The first region will be instrumented as part of the project and needs to be capable of delivering the physics that has been outlined by…

Instrumentation and Detectors · Physics 2022-03-01 Douglas W. Higinbotham

The future Electron-Ion Collider (EIC) will utilize a series of high-luminosity high-energy electron+proton ($e+p$) and electron+nucleus ($e+A$) collisions to explore the inner structure of nucleon and nucleus and the matter formation…

A number of physics arguments for a high-luminosity high energy polarized Electron- Nucleon/Nucleus-Collider (i.e. with a luminosity of at least 10^{33} cm^{-2} sec^{-1} and an invariant energy squarred of at least s >= 100 GeV^2) are…

High Energy Physics - Phenomenology · Physics 2007-05-23 A. Schäfer

With the LHC about to start its last data-taking period before being upgraded to the High-Luminosity LHC, it is time for the international high energy physics community to define the future of collider particle physics. The European…

High Energy Physics - Experiment · Physics 2022-05-26 Rebeca Gonzalez Suarez

The possibilities for inclusive diffraction in the Electron Ion Collider, EIC, in the US, are analyzed. We find that thanks to the excellent forward proton tagging, the EIC will be able to access a wider kinematical range of longitudinal…

High Energy Physics - Phenomenology · Physics 2022-03-08 Wojciech Slominski , Nestor Armesto , Paul R. Newman , Anna Stasto

The Electron-Ion Collider (EIC), a state-of-the-art facility for studying the strong force, is expected to begin commissioning its first experiments in 2028. This is an opportune time for artificial intelligence (AI) to be included from the…

Quarks and gluons are the fundamental constituents of nucleons. Their interactions rather than their mass, is responsible for $99\%$ of the mass of all visible matter in the universe. Measuring the fundamental properties of matter has had a…

Nuclear Experiment · Physics 2019-05-06 Astrid Morreale

One of the more promising observables to probe the high energy regime of the QCD dynamics in the future Electron-Ion Colliders (EIC) is the exclusive vector meson production cross section in coherent and incoherent interactions. Such…

High Energy Physics - Phenomenology · Physics 2019-06-24 M. Krelina , V. P. Goncalves , J. Cepila

This document presents an overview of the physics potential of a future electron-positron linear collider. It represents a common input from the CLIC and ILC communities.

In this article, we describe the key features of the recently completed technical design for the International Linear Collider (ILC), a 200-500 GeV linear electron-positron collider (expandable to 1 TeV) that is based on 1.3 GHz…

Accelerator Physics · Physics 2013-11-15 Barry Barish , James E. Brau

The Electron-Ion Collider (EIC) provides unique opportunities in searching for new physics through its high center of mass energy and coherent interactions of large nuclei. We examine how light weakly interacting vector bosons from a…

High Energy Physics - Phenomenology · Physics 2023-10-26 Hooman Davoudiasl , Roman Marcarelli , Ethan T. Neil

Gluons inside unpolarized hadrons can be linearly polarized provided they have a nonzero transverse momentum. The simplest and theoretically safest way to probe this distribution of linearly polarized gluons is through cos(2 phi)…

High Energy Physics - Phenomenology · Physics 2011-07-08 Daniel Boer , Stanley J. Brodsky , Piet J. Mulders , Cristian Pisano