Electron-Ion Collider: The next QCD frontier: Understanding the glue that binds us all

dc.contributor.author

Accardi, A

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Albacete, JL

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Anselmino, M

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Armesto, N

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Aschenauer, EC

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Bacchetta, A

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Boer, D

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Brooks, WK

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Burton, T

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Chang, NB

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Deng, WT

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Deshpande, A

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Diehl, M

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Dumitru, A

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Dupré, R

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Ent, R

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Fazio, S

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Gao, H

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Guzey, V

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Hakobyan, H

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Hao, Y

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Hasch, D

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Holt, R

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Horn, T

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Huang, M

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Hutton, A

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Hyde, C

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Jalilian-Marian, J

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Klein, S

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Kopeliovich, B

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Kovchegov, Y

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Kumar, K

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Kumerički, K

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Lamont, MAC

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Lappi, T

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Lee, JH

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Lee, Y

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Levin, EM

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Lin, FL

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Litvinenko, V

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Ludlam, TW

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Marquet, C

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Meziani, ZE

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McKeown, R

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Metz, A

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Milner, R

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Morozov, VS

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Mueller, AH

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Müller, B

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Müller, D

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Nadel-Turonski, P

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Paukkunen, H

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Prokudin, A

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Ptitsyn, V

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Qian, X

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Qiu, JW

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Ramsey-Musolf, M

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Roser, T

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Sabatié, F

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Sassot, R

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Schnell, G

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Schweitzer, P

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Sichtermann, E

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Stratmann, M

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Strikman, M

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Sullivan, M

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Taneja, S

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Toll, T

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Trbojevic, D

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Ullrich, T

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Venugopalan, R

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Vigdor, S

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Vogelsang, W

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Weiss, C

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Xiao, BW

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Yuan, F

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Zhang, YH

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Zheng, L

dc.date.accessioned

2019-07-16T14:02:35Z

dc.date.available

2019-07-16T14:02:35Z

dc.date.issued

2016-09-01

dc.date.updated

2019-07-16T14:02:30Z

dc.description.abstract

© 2016, The Author(s). This White Paper presents the science case of an Electron-Ion Collider (EIC), focused on the structure and interactions of gluon-dominated matter, with the intent to articulate it to the broader nuclear science community. It was commissioned by the managements of Brookhaven National Laboratory (BNL) and Thomas Jefferson National Accelerator Facility (JLab) with the objective of presenting a summary of scientific opportunities and goals of the EIC as a follow-up to the 2007 NSAC Long Range plan. This document is a culmination of a community-wide effort in nuclear science following a series of workshops on EIC physics over the past decades and, in particular, the focused ten-week program on “Gluons and quark sea at high energies” at the Institute for Nuclear Theory in Fall 2010. It contains a brief description of a few golden physics measurements along with accelerator and detector concepts required to achieve them. It has been benefited profoundly from inputs by the users’ communities of BNL and JLab. This White Paper offers the promise to propel the QCD science program in the US, established with the CEBAF accelerator at JLab and the RHIC collider at BNL, to the next QCD frontier.

dc.identifier.issn

1434-6001

dc.identifier.issn

1434-601X

dc.identifier.uri

https://hdl.handle.net/10161/19103

dc.language

en

dc.publisher

Springer Science and Business Media LLC

dc.relation.ispartof

European Physical Journal A

dc.relation.isversionof

10.1140/epja/i2016-16268-9

dc.subject

Science & Technology

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Physical Sciences

dc.subject

Physics, Nuclear

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Physics, Particles & Fields

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Physics

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DEEP-INELASTIC-SCATTERING

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COLOR GLASS CONDENSATE

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VIRTUAL COMPTON-SCATTERING

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FINAL-STATE INTERACTIONS

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LEPTON-FLAVOR VIOLATION

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QUARK-GLUON PLASMA

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HARD EXCLUSIVE ELECTROPRODUCTION

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DEPENDENT STRUCTURE-FUNCTION

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SPIN STRUCTURE

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PARTON DISTRIBUTIONS

dc.title

Electron-Ion Collider: The next QCD frontier: Understanding the glue that binds us all

dc.type

Journal article

duke.contributor.orcid

Gao, H|0000-0002-9669-3088

pubs.issue

9

pubs.organisational-group

Trinity College of Arts & Sciences

pubs.organisational-group

Duke

pubs.organisational-group

Physics

pubs.organisational-group

Duke Kunshan University Faculty

pubs.organisational-group

Duke Kunshan University

pubs.publication-status

Published

pubs.volume

52

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