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QCD thermodynamics

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F. Karsch, US<strong>QCD</strong> hardware review, 2011 2<br />

<strong>QCD</strong> <strong>thermodynamics</strong> on<br />

appropriate hardware<br />

the <strong>QCD</strong> equation of state and calculation of the <strong>QCD</strong><br />

transition temperature<br />

requires large zero (and finite) temperature lattices,<br />

lattice generated on leadership class computers<br />

(BlueGene/P) at ALCF using US<strong>QCD</strong> INCITE resources<br />

studies of the <strong>QCD</strong> phase diagram at vanishing chemical<br />

potential<br />

moderate size, finite temperature lattices<br />

use clusters operated for US<strong>QCD</strong> at JLab and FNAL<br />

calculating Taylor expansion coefficients for studies of finite<br />

density <strong>QCD</strong><br />

large number of matrix inversions on single gauge field<br />

configurations are done on GPUs at JLab (and soon at FNAL)

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