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Review of Particle Physics
This biennial Review summarizes much of particle physics. Using data from previous editions, plus 2158 new measurements from 551 papers, we list, evaluate, and average measured properties of gaugeExpand
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Review of Particle Physics (RPP)
This biennial Review summarizes much of particle physics. Using data from previous editions, plus 2658 new measurements from 644 papers, we list, evaluate, and average measured properties of gaugeExpand
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Review of Particle Physics, 2016-2017
The Review summarizes much of particle physics and cosmology. Using data from previous editions, plus 3,283 new measurements from 899 papers, we list, evaluate, and average measured properties ofExpand
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Lattice Methods for Quantum Chromodynamics
Continuum QCD and Its Phenomenology Path Integration Renormalization and the Renormalization Group Yang-Mills Theory on the Lattice Fermions on the Lattice Numerical Methods for Bosons NumericalExpand
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APS : Review of Particle Physics, 2018
The complete Review(both volumes) is published online on the website of the Particle Data Group(http://pdg.lbl.gov) and in a journal. Volume 1 is available in print as thePDG Book. AParticle PhysicsExpand
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REVIEW OF PARTICLE PHYSICS Particle Data Group
The Review summarizes much of particle physics and cosmology. Using data from previous editions, plus 3,283 new measurements from 899 Japers, we list, evaluate, and average measured properties ofExpand
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Masses and Other Parameters of the Light Hadrons
The masses and static parameters of the light hadrons (the pseudoscalar and vector meson nonets and the baryon octet and decuplet) are calculated using the bag model. The effects of quark kineticExpand
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QCD spectrum with three quark flavors
We present results from a lattice hadron spectrum calculation using three flavors of dynamical quarks -- two light and one strange -- and quenched simulations for comparison. These simulations wereExpand
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Review of Particle Physics, 2008-2009
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Studying Quarks and Gluons On Mimd Parallel Computers
TLDR
Numerical simulations of interacting quarks and glu ons may be the best way to calculate the structure of protons and neutrons, as well as the nature of the very early universe or the interiors of neutron stars. Expand
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