• Title of article

    Solving the ghost–gluon system of Yang–Mills theory on GPUs Original Research Article

  • Author/Authors

    Markus Hopfer، نويسنده , , Reinhard Alkofer، نويسنده , , Gundolf Haase، نويسنده ,

  • Issue Information
    ماهنامه با شماره پیاپی سال 2013
  • Pages
    8
  • From page
    1183
  • To page
    1190
  • Abstract
    We solve the ghost–gluon system of Yang–Mills theory using graphics processing units (GPUs). Working in the Landau gauge, we use the Dyson–Schwinger formalism for the mathematical description, as this approach is well suited to directly benefit from the computing power of the GPUs. With the help of a Chebyshev expansion for the dressing functions and a subsequent appliance of a Newton–Raphson method, the non-linear system of coupled integral equations is linearized. The resulting Newton matrix is generated in parallel using OpenMPI and CUDA™. Our results show that it is possible to cut down the run time by two orders of magnitude as compared to a sequential version of the code. This makes the proposed techniques well suited for Dyson–Schwinger calculations on more complicated systems where the Yang–Mills sector of QCD serves as a starting point. In addition, the computation of Schwinger functions using GPU devices is studied.
  • Keywords
    Yang–Mills , Dyson–Schwinger equations , Parallel computing , CUDA™programming model , Graphics processing units , Ghost–gluon system
  • Journal title
    Computer Physics Communications
  • Serial Year
    2013
  • Journal title
    Computer Physics Communications
  • Record number

    1136532