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Quantum chromodynamics / Phases of matter / Nuclear physics / Quark–gluon plasma / QCD vacuum / Lattice QCD / Gluon / Relativistic Heavy Ion Collider / Quark / Physics / Particle physics / Quark matter


Computing Properties of Hadrons, Nuclei and Nuclear Matter from Quantum Chromodynamics SC Program Announcement title and number: Scientific Discovery through Advanced Computing: Nuclear Physics (LAB[removed]Lead Institu
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Document Date: 2014-02-01 17:13:26


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File Size: 2,92 MB

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Dubna / Darmstadt / /

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Lattice QCD / GPU / Wilson / Brookhaven National Laboratory / /

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Europe / /

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Germany / Russia / United States / /

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Thomas Jefferson National Accelerator Facility / Boston University / College of William / Quantum Chromodynamics Lead Institute / University of Washington / University of North Carolina / Massachusetts Institute of Technology / /

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non-zero chemical potential / energy scale / hadron resonance gas / software developments / heterogeneous computing environments / beam energy / baryon chemical potential / chemical potential / simulation software / large-scale computing / accessible chemical freeze-out conditions / collaboration WEB page / chemical potential plane / statistical tools / software suite / optimized software / software development effort / non-zero baryon chemical potential / gauge field evolution algorithms / high energy / nuclear systems / computing / software libraries / /

Organization

University of Washington / College of William and Mary / University of North Carolina / Quantum Chromodynamics Lead Institute / Massachusetts Institute of Technology / Lead Institution / Associate Lab / Boston University / DOE/NSF Nuclear Science Advisory Committee / /

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Robert Edwards / Richard Brower / John Negele / David Richards / Martin Savage / Rob Fowler / Andreas Stathopoulos / Steve Vigdor / /

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Scientist / Project Director / Official / Director Fax / Director / Project Co-director / Executive / /

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JLab / L / /

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New York / North Carolina / Massachusetts / /

Technology

thermodynamics / simulation / gauge field evolution algorithms / /

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