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20072009
most citedFirst results from 2+1 dynamical quark flavors on an anisotropic lattice: light-hadron spectroscopy and setting the strange-quark mass

257 citations · 562 across the 7 of their papers we have counts for

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hep-lat20096 cited

Exploring the Spectrum of QCD using the Lattice

John Bulava, Saul Cohen, Jozef Dudek +14

The calculation of the spectrum of QCD is key to an understanding of the strong interactions, and vital if we are to capitalize on the experimental study of the spectrum. In this p…

hep-lat20092 cited

Nucleon Structure with Domain Wall Fermions at a = 0.084 fm

S. N. Syritsyn, J. D. Bratt, M. F. Lin +13

We present initial calculations of nucleon matrix elements of twist-two operators with 2+1 flavors of domain wall fermions at a lattice spacing a = 0.084 fm for pion masses down to…

hep-lat200880 cited

Excited State Nucleon Spectrum with Two Flavors of Dynamical Fermions

John M. Bulava, Robert G. Edwards, Eric Engelson +8

Highly excited states for isospin 1/2 baryons are calculated for the first time using lattice QCD with two flavors of dynamical quarks. Anisotropic lattices are used with two pion…

hep-lat2008257 cited

First results from 2+1 dynamical quark flavors on an anisotropic lattice: light-hadron spectroscopy and setting the strange-quark mass

Huey-Wen Lin, Saul D. Cohen, Jozef Dudek +12

We present the first light-hadron spectroscopy on a set of dynamical, anisotropic lattices. A convenient set of coordinates that parameterize the two-dimensional plane of…

hep-lat20085 cited

Aspects of Precision Calculations of Nucleon Generalized Form Factors with Domain Wall Fermions on an Asqtad Sea

J. D. Bratt, R. G. Edwards, M. Engelhardt +13

In order to advance lattice calculations of moments of unpolarized, helicity, and transversity distributions, electromagnetic form factors, and generalized form factors of the nucl…

hep-lat200836 cited

First Lattice Study of the - Transition Form Factors

Huey-Wen Lin, Saul D. Cohen, Robert G. Edwards +1

Experiments at Jefferson Laboratory, MIT-Bates, LEGS, Mainz, Bonn, GRAAL, and Spring-8 offer new opportunities to understand in detail how nucleon resonance () properties emer…