Over the last two decades, ROOT TTree has been used for storing over one exabyte of High-Energy Physics (HEP) events. The TTree columnar on-disk layout has been proved to be ideal for analyses of HEP data that typically require access to many events, but only a subset of the information stored for each of them. Future colliders, and particularly HL-LHC, will bring an increase of at least one order of magnitude in the volume of generated data. Therefore, the use of modern storage hardware, such as low-latency high-bandwidth NVMe devices and distributed object stores, becomes more important. However, TTree was not designed to optimally exploit modern hardware and may become a bottleneck for data retrieval. The ROOT RNTuple I/O system aims at ...
When processing large amounts of data, the rate at which reading and writing can take place is a cri...
We overview recent changes in the ROOT I/O system, increasing performance and enhancing it and impro...
We present our early experiences with the Distributed Asynchronous Object Storage (DAOS) focusing on...
Over the last two decades, ROOT TTree has been used for storing over one exabyte of High-Energy Phys...
[EN] Data analysis workflows in High Energy Physics (HEP) read data written in the ROOT columnar for...
The ROOT TTree data format encodes hundreds of petabytes of High Energy and Nuclear Physics events. ...
Data acquisition systems for high energy physics experiments readout terabytes of data per second fr...
Data acquisition (DAQ) systems are a key component for successful data taking in any experiment. Th...
The High Energy and Nuclear Physics Data Access GrandChallenge project has developed an optimizing s...
Data acquisition systems are a key component for successful data taking in any experiment. The DAQ i...
The High Energy and Nuclear Physics Data Access Grand Challenge project has developed an optimizing...
Data sets in High-Energy Physics (HEP) are often produced in a parallel manner where tens or hundred...
HPC systems are becoming ever more important as a data processing resource for the LHC experiments. ...
Nowadays, the large majority of research insights are gained by using compute-aided analyses. Before...
We describe the modern trends in computing technologies in the context of Experimental High Energy P...
When processing large amounts of data, the rate at which reading and writing can take place is a cri...
We overview recent changes in the ROOT I/O system, increasing performance and enhancing it and impro...
We present our early experiences with the Distributed Asynchronous Object Storage (DAOS) focusing on...
Over the last two decades, ROOT TTree has been used for storing over one exabyte of High-Energy Phys...
[EN] Data analysis workflows in High Energy Physics (HEP) read data written in the ROOT columnar for...
The ROOT TTree data format encodes hundreds of petabytes of High Energy and Nuclear Physics events. ...
Data acquisition systems for high energy physics experiments readout terabytes of data per second fr...
Data acquisition (DAQ) systems are a key component for successful data taking in any experiment. Th...
The High Energy and Nuclear Physics Data Access GrandChallenge project has developed an optimizing s...
Data acquisition systems are a key component for successful data taking in any experiment. The DAQ i...
The High Energy and Nuclear Physics Data Access Grand Challenge project has developed an optimizing...
Data sets in High-Energy Physics (HEP) are often produced in a parallel manner where tens or hundred...
HPC systems are becoming ever more important as a data processing resource for the LHC experiments. ...
Nowadays, the large majority of research insights are gained by using compute-aided analyses. Before...
We describe the modern trends in computing technologies in the context of Experimental High Energy P...
When processing large amounts of data, the rate at which reading and writing can take place is a cri...
We overview recent changes in the ROOT I/O system, increasing performance and enhancing it and impro...
We present our early experiences with the Distributed Asynchronous Object Storage (DAOS) focusing on...