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A lattice gauge theory framework for simulations on graphic processing units (GPUs) using NVIDIA's CUDA is presented.
doi:10.1016/0370-2693(82)90696-7
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D. Mehta, M. Kastner, Stationary point analysis of the one-dimensional lattice Landau gauge fixing functional, aka random phase XY Hamiltonian, Annals Phys. 326 (2011) 1425–1440 · 2010
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M. Clark, R. Babich, K. Barros, R. Brower, C. Rebbi, Solving Lattice QCD systems of equations using mixed precision solvers on GPUs, Comput.Phys.Commun. 181 (2010) 1517–1528 · 2010
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D. Mehta, S. Catterall, R. Galvez, A. Joseph, Supersymmetric gauge theories on the lattice: Pfaffian phases and the Neuberger 0/0 problem, PoS LATTICE2011 (2011) 078 · 2011
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D. Mehta, Finding All the Stationary Points of a Potential Energy Landscape via Numerical Polynomial Homotopy Continuation Method, Phys.Rev. E84 (2011) 025702 · 2011
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D. Mehta, Numerical Polynomial Homotopy Continuation Method and String Vacua, Adv.High Energy Phys. 2011 (2011) 263937 · 2011
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D. Mehta, Y.-H. He, J. D. Hauenstein, Numerical Algebraic Geometry: A New Perspective on String and Gauge Theories, JHEP 1207 (2012) 018 · 2012
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F. Winter, Gauge Field Generation on Large-Scale GPU-Enabled Systems, PoS LATTICE2012 (2012) 185 · 2012
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N. Cardoso, P. J. Silva, P. Bicudo, O. Oliveira, Landau Gauge Fixing on GPUs, Comput.Phys.Commun. 184 (2013) 124–129 · 2012
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C. Hughes, D. Mehta, J.-I. Skullerud, Enumerating Gribov copies on the lattice, Annals Phys. 331 (2013) 188–215 · 2013
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