As the Lattice QCD develops improved techniques to shed light; on new physics, it demands increasing computing power. The aims of the current APE (Array Processor Experiment) project is to provide the reference computing platform to the Lattice QCD community for the period 2009-2014. We present the project proposal for a petaflops range super-computing center with high performance and low maintenance costs. to be delivered starting from 2010
Numerical simulations of theories describing the interaction of elementary particles are a key appr...
International audienceThe study and design of a very ambitious petaflop cluster exclusively dedicate...
APE is a family of supercomputers architecturally optimized for the numerical simulation of quantum ...
As the Lattice QCD develops improved techniques to shed light; on new physics, it demands increa...
We present the APE (Array Processor Experiment) project for the development of dedicated parallel co...
Numerical simulations in theoretical high-energy physics (Lattice QCD) require huge computing resour...
---We present the current status of the apeNEXT project. Aim of this project is the development of t...
In October, 2016, the US Department of Energy launched the Exascale Computing Project, which aims to...
We present the current status of the apeNEXT project. Aim of this project is the development of the ...
APE is a family of supercomputers architecturally optimized for the numerical simulation of quantum ...
I am going to highlight recent progress in cluster computer technology and to assess status and pros...
to be published in the ProceedingsWe present the current status of the apeNEXT project. Aim of this ...
We present the APE (Array Processor Experiment) project for the development of dedicated parallel co...
Numerical simulations of theories describing the interaction of elementary particles are a key appr...
International audienceThe study and design of a very ambitious petaflop cluster exclusively dedicate...
APE is a family of supercomputers architecturally optimized for the numerical simulation of quantum ...
As the Lattice QCD develops improved techniques to shed light; on new physics, it demands increa...
We present the APE (Array Processor Experiment) project for the development of dedicated parallel co...
Numerical simulations in theoretical high-energy physics (Lattice QCD) require huge computing resour...
---We present the current status of the apeNEXT project. Aim of this project is the development of t...
In October, 2016, the US Department of Energy launched the Exascale Computing Project, which aims to...
We present the current status of the apeNEXT project. Aim of this project is the development of the ...
APE is a family of supercomputers architecturally optimized for the numerical simulation of quantum ...
I am going to highlight recent progress in cluster computer technology and to assess status and pros...
to be published in the ProceedingsWe present the current status of the apeNEXT project. Aim of this ...
We present the APE (Array Processor Experiment) project for the development of dedicated parallel co...
Numerical simulations of theories describing the interaction of elementary particles are a key appr...
International audienceThe study and design of a very ambitious petaflop cluster exclusively dedicate...
APE is a family of supercomputers architecturally optimized for the numerical simulation of quantum ...