DESY is one of the largest accelerator laboratories in Europe. It develops and operates state of the art accelerators for fundamental science in the areas of high energy physics, photon science and accelerator development. While for decades high energy physics (HEP) has been the most prominent user of the DESY compute, storage and network infrastructure, various scientific areas as science with photons and accelerator development have caught up and are now dominating the demands on the DESY infrastructure resources, with significant consequences for the IT resource provisioning. In this contribution, we will present an overview of the computational, storage and network resources covering the various physics communities on site. Ranging from...
We are proposing to develop a fault-tolerant distributed computing and database system for use in Hi...
Abstract High Energy Physics Experiments (HEP experiments in the following) have been at least in th...
Data taking and analysis infrastructures in HEP (High Energy Physics) have evolved during many years...
DESY is one of the largest accelerator laboratories in Europe. It develops and operates state of the...
to a large extent, and right now. Taking into account that there is traditionally no room for R&...
Experiments in Photon Science at DESY will, in future, undergo significant changes in terms of data ...
We describe the modern trends in computing technologies in the context of Experimental High Energy P...
The ATLAS experiment at CERN’s Large Hadron Collider uses theWorldwide LHC Computing Grid, the WLCG,...
Nile 1 is a project developing computing solutions for High Energy Physics. The goal is to provide...
The ATLAS experiment at CERN’s Large Hadron Collider uses the Worldwide LHC Computing Grid, the WLCG...
High Energy Physics (HEP) experiments will enter a new era with the start of the HL-LHC program, wit...
Abstract With the commissioning of the upgraded LHC-HL machine, High Energy Physics will face a lar...
High Performance Computing (HPC) centers are the largest facilities available for science. They are ...
High Energy Physics (HEP) experiments rely on the networks as one of the critical parts of their inf...
The needs of experimental high-energy physics for large-scale computing and data handling are explai...
We are proposing to develop a fault-tolerant distributed computing and database system for use in Hi...
Abstract High Energy Physics Experiments (HEP experiments in the following) have been at least in th...
Data taking and analysis infrastructures in HEP (High Energy Physics) have evolved during many years...
DESY is one of the largest accelerator laboratories in Europe. It develops and operates state of the...
to a large extent, and right now. Taking into account that there is traditionally no room for R&...
Experiments in Photon Science at DESY will, in future, undergo significant changes in terms of data ...
We describe the modern trends in computing technologies in the context of Experimental High Energy P...
The ATLAS experiment at CERN’s Large Hadron Collider uses theWorldwide LHC Computing Grid, the WLCG,...
Nile 1 is a project developing computing solutions for High Energy Physics. The goal is to provide...
The ATLAS experiment at CERN’s Large Hadron Collider uses the Worldwide LHC Computing Grid, the WLCG...
High Energy Physics (HEP) experiments will enter a new era with the start of the HL-LHC program, wit...
Abstract With the commissioning of the upgraded LHC-HL machine, High Energy Physics will face a lar...
High Performance Computing (HPC) centers are the largest facilities available for science. They are ...
High Energy Physics (HEP) experiments rely on the networks as one of the critical parts of their inf...
The needs of experimental high-energy physics for large-scale computing and data handling are explai...
We are proposing to develop a fault-tolerant distributed computing and database system for use in Hi...
Abstract High Energy Physics Experiments (HEP experiments in the following) have been at least in th...
Data taking and analysis infrastructures in HEP (High Energy Physics) have evolved during many years...