This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the trend of previous workshops on the topic and pointing to establishing a recurrent series. All different applications of massively parallel computing in HEP will be addressed, from computational speed-ups in online and offline data selection and analysis to hard real-time applications in low-level triggering, to Monte Carlo simulations for lattice QCD. Both current activities and plans on foreseen experiments and projects will be discussed, together with perspectives on the evolution of the hardware and software
Abstract. We describe a pilot project (GAP- GPU Application Project) for the use of GPUs (Graphics p...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
The aim of the GAP project is the deployment of Graphic Processing Units (GPUs) in real-time applica...
The paper describes the GAP Project, whose objective is the deployment of Graphic Processing Units (...
The paper describes the GAP Project, whose objective is the deployment of Graphic Processing Units (...
The paper describes the GAP Project, whose objective is the deployment of Graphic Processing Units (...
Abstract. We describe a pilot project (GAP- GPU Application Project) for the use of GPUs (Graphics p...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
The aim of the GAP project is the deployment of Graphic Processing Units (GPUs) in real-time applica...
The paper describes the GAP Project, whose objective is the deployment of Graphic Processing Units (...
The paper describes the GAP Project, whose objective is the deployment of Graphic Processing Units (...
The paper describes the GAP Project, whose objective is the deployment of Graphic Processing Units (...
Abstract. We describe a pilot project (GAP- GPU Application Project) for the use of GPUs (Graphics p...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...
This Conference focuses on the application of GPUs in High Energy Physics (HEP), expanding on the tr...