Differentiable Full Detector Simulation of a Projective Dual-Readout Crystal Electromagnetic Calorimeter with Longitudinal Segmentation and Precision Timing
Instrumentation and Detectors2024-08-27v2High Energy Physics - Experiment
A differentiable full detector simulation has been implemented in the key4hep software stack for future colliders. A fully automated and configurable geometry enabling differentiation of all detector dimensions, including crystal widths and thicknesses, is presented. The software architecture, development environment, and necessary components to implement a new detector concept from scratch are described. General AI/ML reconstruction strategies for future collider detectors are discussed, based around the idea of picking the right neural network for each detector.
@article{arxiv.2408.11027,
title = {Differentiable Full Detector Simulation of a Projective Dual-Readout Crystal Electromagnetic Calorimeter with Longitudinal Segmentation and Precision Timing},
author = {Wonyong Chung},
journal= {arXiv preprint arXiv:2408.11027},
year = {2024}
}
Comments
4 pages, 3 figures, 2 tables. Submitted to EPJ Web of Conferences (CALOR 2024)