SPIROS: Streamlined, Precise, Intuitive, and Rapid Optical Simulator for particle physics detectors

Fuente: arXiv
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Main Author: Kikawa, Tatsuya
Format: Preprint
Published: 2026
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author Kikawa, Tatsuya
author_facet Kikawa, Tatsuya
contents This paper presents SPIROS (Streamlined, Precise, Intuitive, and Rapid Optical Simulator), a dedicated optical simulation tool developed for the design and analysis of particle physics detectors. Unlike general-purpose frameworks such as GEANT4, SPIROS offers a lightweight simulation engine and a user-friendly interface optimized for optical processes, including scintillation, Cherenkov emission, and photon transport with reflection, refraction, scattering, absorption, and detection. Detector geometries can be directly imported from 3D CAD models, and all configurations including materials, surfaces, sources, and sensors are specified via a single human-readable input file. Validation against GEANT4 shows excellent agreement in photon generation and propagation behaviors, while benchmark tests demonstrate that SPIROS runs more than two times faster for typical detector configurations. The software has already been applied to multiple neutrino experiments, including T2K, NINJA, and AXEL, for detector design, performance studies, and optimization. SPIROS is open-source and freely available at https://github.com/tkikawa/spiros.
format Preprint
id arxiv_https___arxiv_org_abs_2604_08279
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle SPIROS: Streamlined, Precise, Intuitive, and Rapid Optical Simulator for particle physics detectors
Kikawa, Tatsuya
Instrumentation and Detectors
Optics
This paper presents SPIROS (Streamlined, Precise, Intuitive, and Rapid Optical Simulator), a dedicated optical simulation tool developed for the design and analysis of particle physics detectors. Unlike general-purpose frameworks such as GEANT4, SPIROS offers a lightweight simulation engine and a user-friendly interface optimized for optical processes, including scintillation, Cherenkov emission, and photon transport with reflection, refraction, scattering, absorption, and detection. Detector geometries can be directly imported from 3D CAD models, and all configurations including materials, surfaces, sources, and sensors are specified via a single human-readable input file. Validation against GEANT4 shows excellent agreement in photon generation and propagation behaviors, while benchmark tests demonstrate that SPIROS runs more than two times faster for typical detector configurations. The software has already been applied to multiple neutrino experiments, including T2K, NINJA, and AXEL, for detector design, performance studies, and optimization. SPIROS is open-source and freely available at https://github.com/tkikawa/spiros.
title SPIROS: Streamlined, Precise, Intuitive, and Rapid Optical Simulator for particle physics detectors
topic Instrumentation and Detectors
Optics
url https://arxiv.org/abs/2604.08279