A new method of event characterization based on Deep Learning is presented. The PointNet models can be used for fast, online event-by-event impact parameter determination at the CBM experiment. For this study, UrQMD and the CBM detector simulation are used to generate Au+Au collision events at 10 A GeV which are then used to train and evaluate PointNet based architectures. The models can be trained on features like the hit position of particles in the CBM detector planes, tracks reconstructed from the hits or combinations thereof. The Deep Learning models reconstruct impact parameters from 2-14 fm with a mean error varying from -0.33 to 0.22 fm. For impact parameters in the range of 5-14 fm, a model which uses the combination of hit and tra...
The size and evolution of the medium created in a heavy-ion collision depends on collision geometry....
The evolution of matter created in a heavy-ion collision depends on its initial geometry. Experiment...
An accurate impact parameter determination in a heavy ion collision is crucial for almost all furthe...
A new method of event characterization based on Deep Learning is presented. The PointNet models can ...
Abstract A novel method for identifying the nature of QCD transitions in heavy-ion collision experim...
Targeting for rare observables, the CBM experiment will operate at high interaction rates of up to 1...
Targeting for rare observables, the CBM experiment will operate at high interaction rates of up to 1...
The Compressed Baryonic Matter experiment (CBM) will investigate strongly interacting matter at high...
The future heavy-ion experiment CBM (FAIR/GSI, Darmstadt, Germany) will focus on the measurements of...
The deep learning technique has been applied for the first time to investigate the possibility of ce...
The future heavy-ion experiment CBM (FAIR/GSI, Darmstadt, Germany) will focus on measurement of very...
Over the last years, machine learning tools have been successfully applied to a wealth of problems i...
Centrality, as a geometrical property of the collision, is crucial for the physical interpretation o...
The mission of the Compressed Baryonic Matter (CBM) experiment is to investigate the phase diagram o...
The Compressed Baryonic Matter experiment (CBM) is a next-generation heavy-ion experiment to be oper...
The size and evolution of the medium created in a heavy-ion collision depends on collision geometry....
The evolution of matter created in a heavy-ion collision depends on its initial geometry. Experiment...
An accurate impact parameter determination in a heavy ion collision is crucial for almost all furthe...
A new method of event characterization based on Deep Learning is presented. The PointNet models can ...
Abstract A novel method for identifying the nature of QCD transitions in heavy-ion collision experim...
Targeting for rare observables, the CBM experiment will operate at high interaction rates of up to 1...
Targeting for rare observables, the CBM experiment will operate at high interaction rates of up to 1...
The Compressed Baryonic Matter experiment (CBM) will investigate strongly interacting matter at high...
The future heavy-ion experiment CBM (FAIR/GSI, Darmstadt, Germany) will focus on the measurements of...
The deep learning technique has been applied for the first time to investigate the possibility of ce...
The future heavy-ion experiment CBM (FAIR/GSI, Darmstadt, Germany) will focus on measurement of very...
Over the last years, machine learning tools have been successfully applied to a wealth of problems i...
Centrality, as a geometrical property of the collision, is crucial for the physical interpretation o...
The mission of the Compressed Baryonic Matter (CBM) experiment is to investigate the phase diagram o...
The Compressed Baryonic Matter experiment (CBM) is a next-generation heavy-ion experiment to be oper...
The size and evolution of the medium created in a heavy-ion collision depends on collision geometry....
The evolution of matter created in a heavy-ion collision depends on its initial geometry. Experiment...
An accurate impact parameter determination in a heavy ion collision is crucial for almost all furthe...