We report on our implementation of the RHMC algorithm for the simulation of lattice QCD with two staggered flavors on Graphics Processing Units, using the NVIDIA CUDA programming language. The main feature of our code is that the GPU is not used just as an accelerator, but instead the whole Molecular Dynamics trajectory is performed on it. After pointing out the main bottlenecks and how to circumvent them, we discuss the obtained performances. We present some preliminary results regarding OpenCL and multiGPU extensions of our code and discuss future perspectives
Abstract: Lattice spin models are useful for studying critical phenomena and allow the extraction of...
QCDGPU is an open-source tool for Monte Carlo lattice simulations of the SU(N) gluo- dynamics and O(...
This report is devoted to Lattice QCD simulations carried out at the “Govorun” supercomputer. The ba...
We report on our implementation of the RHMC algorithm for the simulation of lattice QCD with two sta...
We present our implementation of the RHMC algorithm for staggered fermions on Graphics Pro-cessing U...
We present our implementation of the RHMC algorithm for staggered fermions on Graphics Pro-cessing U...
Lattice QCD is widely considered the correct theory of the strong force and is able to make quantita...
We discuss an implementation of molecular dynamics (MD) simulations on a graphic processing unit (GP...
The starting point of any lattice QCD computation is the generation of a Markov chain of gauge field...
The multi-GPU open-source package QCDGPU for lattice Monte Carlo simulations of pure SU(N) gluody-na...
Abstract. Molecular dynamics simulations are a common and often repeated task in molecular biology. ...
The speed, bandwidth and cost characteristics of today's PC graphics cards make them an attractive t...
Graphics Processing Units (GPUs) are being used in many areas of physics, since the performance vers...
Abstract—Computing platforms equipped with accelerators like GPUs have proven to provide great compu...
In this work we explore the performance of CUDA in quenched lattice SU(2) simulations. CUDA, NVIDIA ...
Abstract: Lattice spin models are useful for studying critical phenomena and allow the extraction of...
QCDGPU is an open-source tool for Monte Carlo lattice simulations of the SU(N) gluo- dynamics and O(...
This report is devoted to Lattice QCD simulations carried out at the “Govorun” supercomputer. The ba...
We report on our implementation of the RHMC algorithm for the simulation of lattice QCD with two sta...
We present our implementation of the RHMC algorithm for staggered fermions on Graphics Pro-cessing U...
We present our implementation of the RHMC algorithm for staggered fermions on Graphics Pro-cessing U...
Lattice QCD is widely considered the correct theory of the strong force and is able to make quantita...
We discuss an implementation of molecular dynamics (MD) simulations on a graphic processing unit (GP...
The starting point of any lattice QCD computation is the generation of a Markov chain of gauge field...
The multi-GPU open-source package QCDGPU for lattice Monte Carlo simulations of pure SU(N) gluody-na...
Abstract. Molecular dynamics simulations are a common and often repeated task in molecular biology. ...
The speed, bandwidth and cost characteristics of today's PC graphics cards make them an attractive t...
Graphics Processing Units (GPUs) are being used in many areas of physics, since the performance vers...
Abstract—Computing platforms equipped with accelerators like GPUs have proven to provide great compu...
In this work we explore the performance of CUDA in quenched lattice SU(2) simulations. CUDA, NVIDIA ...
Abstract: Lattice spin models are useful for studying critical phenomena and allow the extraction of...
QCDGPU is an open-source tool for Monte Carlo lattice simulations of the SU(N) gluo- dynamics and O(...
This report is devoted to Lattice QCD simulations carried out at the “Govorun” supercomputer. The ba...