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Ultra-High-Resolution Detector Simulation with Intra-Event Aware GAN and Self-Supervised Relational Reasoning

H Hashemi, N Hartmann, S Sharifzadeh, J Kahn… - arXiv preprint arXiv …, 2023 - arxiv.org
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… Applications of this work include controllable simulation-based inference and event generation, high-granularity detector simulation such as at the HL-LHC (High …

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@article{2303.08046v2,
Author = {Baran Hashemi and Nikolai Hartmann and Sahand Sharifzadeh and James Kahn and Thomas Kuhr},
Title = {Ultra-High-Resolution Detector Simulation with Intra-Event Aware GAN and
Self-Supervised Relational Reasoning},
Eprint = {2303.08046v2},
DOI = {10.1038/s41467-024-49104-4},
ArchivePrefix = {arXiv},
PrimaryClass = {physics.ins-det},
Abstract = {Simulating high-resolution detector responses is a computationally intensive
process that has long been challenging in Particle Physics. Despite the ability
of generative models to streamline it, full ultra-high-granularity detector
simulation still proves to be difficult as it contains correlated and
fine-grained information. To overcome these limitations, we propose Intra-Event
Aware Generative Adversarial Network (IEA-GAN). IEA-GAN presents a Relational
Reasoning Module that approximates an event in detector simulation, generating
contextualized high-resolution full detector responses with a proper relational
inductive bias. IEA-GAN also introduces a Self-Supervised intra-event aware
loss and Uniformity loss, significantly enhancing sample fidelity and
diversity. We demonstrate IEA-GAN's application in generating sensor-dependent
images for the ultra-high-granularity Pixel Vertex Detector (PXD), with more
than 7.5 M information channels at the Belle II Experiment. Applications of
this work span from Foundation Models for high-granularity detector simulation,
such as at the HL-LHC (High Luminosity LHC), to simulation-based inference and
fine-grained density estimation. To our knowledge, IEA-GAN is the first
algorithm for faithful ultra-high-granularity full detector simulation with
event-based reasoning.},
Year = {2023},
Month = {Mar},
Note = {volume 15, Article number: 4916 (2024)},
Url = {http://arxiv.org/abs/2303.08046v2},
File = {2303.08046v2.pdf}
}

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