Lattice Gauge Theory is an integral part of particle physics that requires high performance computing in the multi-Tflops regime. These requirements are motivated by the rich research program and the physics milestones to be reached by the lattice community. Over the last years the enormous gains in processor performance, mem-ory bandwidth, and external I/O bandwidth for parallel applications have made commodity clusters exploiting PCs or workstations also suitable for large Lattice Gauge Theory applications. For more than one year two clusters have been operated at the two DESY sites in Hamburg and Zeuthen, consisting of 32 resp. 16 dual-CPU PCs, equipped with Intel Pentium 4 Xeon processors. Interconnection of the nodes is done by way of ...
Lattice QCD is a fundamental non-perturbative approach to solving the quantum chromodynamics (QCD) t...
Numerical simulations of theories describing the interaction of elementary particles are a key appr...
A status report is given of the QCDOC project, a massively parallel computer optimized for lattice Q...
Lattice Gauge Theory is an integral part of particle physics that requires high performance computin...
operates production clusters for lattice QCD simulations. This paper will describe these clusters. T...
A PC-based parallel computer for medium/large scale lattice QCD simulations is suggested. The Eoetvo...
It is shown that the 21264 Alpha processor can reach about 20% sustained efficiency for the inversio...
Using commodity component personal computers based on Alpha processor and commodity network devices ...
We review the architecture of massively parallel machines used for lattice QCD simulations and prese...
Abstract. Lattice QuantumChromodynamics (LQCD) is currently the only known model independent, non pe...
I highlight recent progress in cluster computer technology and assess status and prospects of cluste...
Current PC processors are equipped with vector processing units and have other advanced features tha...
We describe the construction and results to date of Fermilab's three Myrinet-networked lattice QCD p...
Large scale QCD Monte Carlo calculations have typically been performed on either commercial supercom...
We describe the construction of large scale clusters for lattice QCD computing being developed under...
Lattice QCD is a fundamental non-perturbative approach to solving the quantum chromodynamics (QCD) t...
Numerical simulations of theories describing the interaction of elementary particles are a key appr...
A status report is given of the QCDOC project, a massively parallel computer optimized for lattice Q...
Lattice Gauge Theory is an integral part of particle physics that requires high performance computin...
operates production clusters for lattice QCD simulations. This paper will describe these clusters. T...
A PC-based parallel computer for medium/large scale lattice QCD simulations is suggested. The Eoetvo...
It is shown that the 21264 Alpha processor can reach about 20% sustained efficiency for the inversio...
Using commodity component personal computers based on Alpha processor and commodity network devices ...
We review the architecture of massively parallel machines used for lattice QCD simulations and prese...
Abstract. Lattice QuantumChromodynamics (LQCD) is currently the only known model independent, non pe...
I highlight recent progress in cluster computer technology and assess status and prospects of cluste...
Current PC processors are equipped with vector processing units and have other advanced features tha...
We describe the construction and results to date of Fermilab's three Myrinet-networked lattice QCD p...
Large scale QCD Monte Carlo calculations have typically been performed on either commercial supercom...
We describe the construction of large scale clusters for lattice QCD computing being developed under...
Lattice QCD is a fundamental non-perturbative approach to solving the quantum chromodynamics (QCD) t...
Numerical simulations of theories describing the interaction of elementary particles are a key appr...
A status report is given of the QCDOC project, a massively parallel computer optimized for lattice Q...