Using detailed simulations of calorimeter showers as training data, we investigate the use of deep learning algorithms for the simulation and reconstruction of single isolated particles produced in high-energy physics collisions. We train neural networks on single-particle shower data at the calorimeter-cell level, and show significant improvements for simulation and reconstruction when using these networks compared to methods which rely on currently-used state-of-the-art algorithms. We define two models: an end-to-end reconstruction network which performs simultaneous particle identification and energy regression of particles when given calorimeter shower data, and a generative network which can provide reasonable modeling of calorimeter s...
The future need of simulated events by the LHC experiments and their High Luminosity upgrades, is ex...
Modern high energy physics crucially relies on simulation to connect experimental observations to un...
Imaging capabilities of highly granular calorimeters allow to study in detail the inner structure of...
Using detailed simulations of calorimeter showers as training data, we investigate the use of deep l...
Using detailed simulations of calorimeter showers as training data, we investigate the use of deep l...
High-granularity calorimeters, in particular those providing also fine-grained lateral resolution, o...
Physicists at the Large Hadron Collider (LHC) rely on detailed simulations of particle collisions to...
The high-luminosity upgrade of the LHC will come with unprecedented physics and computing challenges...
Modeling the physics of a detector's response to particle collisions is one of the most CPU intensiv...
The future need of simulated events for the LHC experiments and their High Luminosity upgrades, is e...
Modeling the physics of the detector response to particle collisions is one of the most CPU intensiv...
The High Granularity end-cap Calorimeter is part of the phase-2 CMS upgrade (see Figure 1)[1]. It’s ...
International audienceDetectors of High Energy Physics experiments, such as the ATLAS dectector [1] ...
Accurate simulation of physical processes is crucial for the success of modern particle physics. How...
In particle physics the simulation of particle transport through detectors requires an enormous amou...
The future need of simulated events by the LHC experiments and their High Luminosity upgrades, is ex...
Modern high energy physics crucially relies on simulation to connect experimental observations to un...
Imaging capabilities of highly granular calorimeters allow to study in detail the inner structure of...
Using detailed simulations of calorimeter showers as training data, we investigate the use of deep l...
Using detailed simulations of calorimeter showers as training data, we investigate the use of deep l...
High-granularity calorimeters, in particular those providing also fine-grained lateral resolution, o...
Physicists at the Large Hadron Collider (LHC) rely on detailed simulations of particle collisions to...
The high-luminosity upgrade of the LHC will come with unprecedented physics and computing challenges...
Modeling the physics of a detector's response to particle collisions is one of the most CPU intensiv...
The future need of simulated events for the LHC experiments and their High Luminosity upgrades, is e...
Modeling the physics of the detector response to particle collisions is one of the most CPU intensiv...
The High Granularity end-cap Calorimeter is part of the phase-2 CMS upgrade (see Figure 1)[1]. It’s ...
International audienceDetectors of High Energy Physics experiments, such as the ATLAS dectector [1] ...
Accurate simulation of physical processes is crucial for the success of modern particle physics. How...
In particle physics the simulation of particle transport through detectors requires an enormous amou...
The future need of simulated events by the LHC experiments and their High Luminosity upgrades, is ex...
Modern high energy physics crucially relies on simulation to connect experimental observations to un...
Imaging capabilities of highly granular calorimeters allow to study in detail the inner structure of...