collaborators

7 papers

physics.ins-det2026

A new diffuse reflector filament for additive manufacturing of 3D printing finely-segmented plastic scintillator

A. Krech, A. Boyarintsev, B. Grynyov +16

This study presents the development and the characterization of novel white reflective filaments suitable for additive manufacturing of finely segmented plastic scintillators. The…

physics.ins-det2026

An ultrafast plenoptic-camera system for high-resolution 3D particle tracking in unsegmented scintillators

Till Dieminger, Saúl Alonso-Monsalve, Christoph Alt +7

Neutrino detectors, particle calorimeters and some dark matter detectors require dense and massive active materials. An extremely fine segmentation is desirable to achieve precise…

physics.ins-det2025

PlatonSPAD: A novel SPAD sensor for large-scale high-resolution particle detectors

Kodai Kaneyasu, Till Dieminger, Matthew Franks +3

High-resolution 3D tracking with sub-nanosecond timing is required for the detection of elementary particles, such as neutrinos. Conventional detectors, which utilize analog silico…

physics.ins-det2025

A new diffuse reflector filament for additive manufacturing of 3D printing finely-segmented plastic scintillator

S. Berns, E. Boillat, S. Hugon +16

This study presents the development and characterization of a novel white reflective filament suitable for additive manufacturing of finely segmented plastic scintillators using 3D…

hep-ex2025

Sensitivity of the Hyper-Kamiokande experiment to neutrino oscillation parameters using acceleration neutrinos

Kamiokande Collaboration

This paper describes the analysis to estimate the sensitivity of the Hyper-Kamiokande experiment to long-baseline neutrino oscillation parameters using accelerator (anti)neutrinos.…

cs.LG2025

AI-based particle track identification in scintillating fibres read out with imaging sensors

Noemi Bührer, Saúl Alonso-Monsalve, Matthew Franks +2

This paper presents the development and application of an AI-based method for particle track identification using scintillating fibres read out with imaging sensors. We propose a v…