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The Present and Future of QCD: QCD Town Meeting White Paper – An Input to the 2023 NSAC Long Range Plan

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129Institutions déclarées
25Pays d’affiliation déclarés

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Le résumé fourni par la source

It is currently understood that there are four fundamental forces in nature: gravitational, electromagnetic, weak and strong forces. The strong force governs the interactions between quarks and gluons, elementary particles whose interactions give rise to the vast majority of visible mass in the universe. The mathematical description of the strong force is provided by the non-Abelian gauge theory Quantum Chromodynamics (QCD). While QCD is an exquisite theory, constructing the nucleons and nuclei from quarks, and furthermore explaining the behavior of quarks and gluons at all energies, remain to be complex and challenging problems. Such challenges, along with the desire to understand all visible matter at the most fundamental level, position the study of QCD as a central thrust of research in nuclear science. Experimental insight into the strong force can be gained using large particle accelerator facilities, which are necessary to probe the very short distance scales over which quarks and gluons interact. The Long Range Plans (LRPs) exercise of 1989 and 1996 led directly to the construction of two world-class facilities: the Continuous Electron Beam Accelerator Facility (CEBAF) at Jefferson Lab (JLab) that is focused on studying how the structure of hadrons emerges from QCD (cold QCD research), and the Relativistic Heavy Ion Collider (RHIC) at Brookhaven National Lab (BNL) that aims at the discovery and study of a new state of matter, the quark-gluon plasma (QGP), at extremely high temperatures (hot QCD research). These past investments have produced major advances. Nucleons and nuclei are being studied with increasing precision with a unified description of the partonic structure utilizing multi-dimensional imaging. Significant progress has been made, paving the way towards a complete picture of how quarks and gluons give rise to the mass, spin, and momentum of the nucleon. In hot QCD, the QGP is created in the collisions of nuclei at RHIC and the Large Hadron Collider (LHC) and is observed to behave like a fluid with very low specific shear viscosity; the current goals are to understand how the fluid behavior emerges from QCD and to characterize the temperature (and chemical potential) dependence of the properties of the QGP. As this White Paper is written, current experimental programs at CEBAF, RHIC and the LHC continue to provide exciting near term opportunities to capitalize on the investments in experimental equipment and accelerator operations. Most importantly, the QCD community looks forward to the construction of the Electron Ion Collider (EIC) as a major new facility to push forward QCD research in the next decades, with significant focus on exploring the properties of gluons, the mediators of the strong force.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
The Present and Future of QCD: QCD Town Meeting White Paper – An Input to the 2023 NSAC Long Range Plan
Date Crossref
01/03/2023
Éditeur
Office of Scientific and Technical Information (OSTI)
Type
report

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Les institutions déclarées

Thomas Jefferson National Accelerator FacilityVirginia TechGeorge Washington UniversityUniversity of BonnUniversity of MichiganUniversity of KansasYarmouk UniversityUniversity of Illinois Urbana-ChampaignOld Dominion UniversityUniversity of ZagrebArgonne National LaboratoryUniversity of California, RiversideLawrence Berkeley National LaboratoryA. Alikhanyan National LaboratoryUniversity of North Carolina WilmingtonBrookhaven National LaboratoryTemple UniversityWilliam & MaryWilliams (United States)University of VirginiaHebrew University of JerusalemUniversity of North Carolina at Chapel HillIstituto Nazionale di Fisica NucleareRice UniversityBenemérita Universidad Autónoma de PueblaYale UniversityIndian Institute of Technology MadrasUniversity of HoustonDuquesne UniversityAstraZeneca (United Kingdom)Universidade Federal do Rio Grande do SulCI2Stony Brook UniversityMississippi State UniversityUniversity of CincinnatiChristopher Newport UniversityUniversity of California, BerkeleyStanford UniversityGlostrup HospitalMassachusetts Institute of TechnologySyracuse UniversityAdıyaman UniversityIstanbul UniversityGeorgia State UniversityLamar UniversityUniversity of MiamiFlorida International UniversityUniversity of CagliariIstituto Nazionale di Fisica Nucleare, Sezione di CagliariLos Alamos National LaboratoryUniversity of Maryland, College ParkOak Ridge National LaboratoryKey Laboratory of Guangdong ProvinceThe NSF AI Institute for Artificial Intelligence and Fundamental InteractionsHampton UniversityFlorida State UniversityUniversity of ConnecticutIndian Institute of Science BangaloreAbilene Christian UniversityBaruch CollegeSouthern University at New OrleansUniversity of ChicagoNew Mexico State UniversityUniversity of TsukubaUniversity of Illinois ChicagoUniversity of Tennessee at KnoxvilleInstituto Tecnológico de AeronáuticaTexas A&M University657 OsloBerks County Public LibrariesUniversity of AmericaCatholic University of AmericaRutgers, The State University of New JerseyUnion CollegeUniversity of South CarolinaVanderbilt University174th hospital of the People's Liberation ArmyCity University of New YorkFederico Santa María Technical UniversityLongwood UniversityUniversity of California, Los AngelesThe University of Texas at AustinDuke UniversityTriangle Universities Nuclear LaboratoryCEINGE Biotecnologie Avanzate Franco Salvatore (Italy)Iowa State University81th Hospital of PLAUniversity of ReginaLomonosov Moscow State UniversityNorth Carolina State UniversityVirginia Union UniversityIndiana University BloomingtonChonnam National UniversitySejong UniversityOhio UniversityThe Ohio State UniversityUniversity of Colorado BoulderUniversity of Massachusetts AmherstUniversity of KentuckyMichigan State UniversityShandong UniversityWayne State UniversityCentral China Normal UniversityWuhan No.9 HospitalUniversity of GlasgowCarnegie Mellon UniversityUniversité Paris-SaclayNational Institute of Science Education and ResearchUniversidad de SonoraSouthern Methodist UniversityIstituto Nazionale di Fisica Nucleare, Sezione di PaviaLebanon Valley CollegeIstituto Nazionale di Fisica Nucleare, Laboratori Nazionali di FrascatiPaul Scherrer InstituteNorfolk State UniversityUniversity of New HampshireRIKENSevastopol National Technical UniversityUniversity of West FloridaUniversity of WashingtonEuropean Organization for Nuclear ResearchPennsylvania State UniversityPurdue University West LafayetteKent State UniversityFuture University in EgyptLawrence Livermore National LaboratoryUniversity of California, DavisCanisius CollegeTsinghua University

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Les sujets associés

Particle Detector Development and PerformanceParticle physics theoretical and experimental studiesNuclear Physics and Applications

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