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Fine-tuned Normalizing Flows for ALICE Zero Degree Calorimeter Fast Simulation

Authors

Do you know Emilia Majerz?You can claim authorship or link another user.Do you know Jacek Otwinowski?You can claim authorship or link another user.Do you know Witold Dzwinel?You can claim authorship or link another user.Do you know Jacek Kitowski?You can claim authorship or link another user.

Abstract

Simulating the ALICE Zero Degree Calorimeter (ZDC) neutron detector responses at the LHC is computationally expensive, requiring complex Monte Carlo chains. We develop a generative surrogate, focusing on Normalizing Flows (NFs). Through transfer learning, we pre-train on the full imbalanced dataset and fine-tune specialized models for different particle types ($γ$, $n$, $Λ$, $K_S^0$, $Σ^+$) using two gradual-unfreezing schemes. As standard ZDC metrics like Wasserstein distance overlook conditional structure, we introduce refined metrics: conditional weighted MAE, dispersion ratio, and Jaccard co-activation error, that better capture physics-relevant input-output dependencies and response variability. Our ensemble of fine-tuned models achieves a Wasserstein distance of $1.61 \pm 0.02$, outperforming baselines across all metrics. This work provides a generalizable NF-based framework for LHC detector simulation, combining NFs, conditional fine-tuning, and physics-motivated evaluation.

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Publication notes

Author note
This paper has been accepted for presentation at the 16th International Conference on Parallel Processing & Applied Mathematics (PPAM 2026)