Generation of simulated detector response to collision products is crucial to data analysis in particle physics, but computationally very expensive. One subdetector, the calorimeter, dominates the computational time due to the high granularity of its cells and complexity of the interactions. Generative models can provide more rapid sample production, but currently require significant effort to optimize performance for specific detector geometries, often requiring many models to describe the varying cell sizes and arrangements, without the ability to generalize to other geometries. We develop a $\textit{geometry-aware}$ autoregressive model, which learns how the calorimeter response varies with geometry, and is capable of generating simulate...
The future need of simulated events for the LHC experiments and their High Luminosity upgrades, is e...
Accurate simulation of physical processes is crucial for the success of modern particle physics. How...
While simulation is a crucial cornerstone of modern high energy physics, it places a heavy burden on...
Simulation is crucial for all aspects of collider data analysis, but the available computing budget ...
Motivated by the high computational costs of classical simulations, machine-learned generative model...
Score-based generative models are a new class of generative algorithms that have been shown to produ...
Modern high energy physics crucially relies on simulation to connect experimental observations to un...
Motivated by the high computational costs of classical simulations, machine-learned generative model...
Precision measurements and new physics searches at the Large Hadron Collider require efficient simul...
International audienceDetectors of High Energy Physics experiments, such as the ATLAS dectector [1] ...
Motivated by the high computational costs of classical simulations, machine-learned gen- erative mod...
The need for large scale and high fidelity simulated samples for the extensive physics program of th...
Score based generative models are a new class of generative models that have been shown to accuratel...
Physicists at the Large Hadron Collider (LHC) rely on detailed simulations of particle collisions to...
Simulation is one of the key components in high energy physics. Historically it relies on the Monte ...
The future need of simulated events for the LHC experiments and their High Luminosity upgrades, is e...
Accurate simulation of physical processes is crucial for the success of modern particle physics. How...
While simulation is a crucial cornerstone of modern high energy physics, it places a heavy burden on...
Simulation is crucial for all aspects of collider data analysis, but the available computing budget ...
Motivated by the high computational costs of classical simulations, machine-learned generative model...
Score-based generative models are a new class of generative algorithms that have been shown to produ...
Modern high energy physics crucially relies on simulation to connect experimental observations to un...
Motivated by the high computational costs of classical simulations, machine-learned generative model...
Precision measurements and new physics searches at the Large Hadron Collider require efficient simul...
International audienceDetectors of High Energy Physics experiments, such as the ATLAS dectector [1] ...
Motivated by the high computational costs of classical simulations, machine-learned gen- erative mod...
The need for large scale and high fidelity simulated samples for the extensive physics program of th...
Score based generative models are a new class of generative models that have been shown to accuratel...
Physicists at the Large Hadron Collider (LHC) rely on detailed simulations of particle collisions to...
Simulation is one of the key components in high energy physics. Historically it relies on the Monte ...
The future need of simulated events for the LHC experiments and their High Luminosity upgrades, is e...
Accurate simulation of physical processes is crucial for the success of modern particle physics. How...
While simulation is a crucial cornerstone of modern high energy physics, it places a heavy burden on...