Panda Diplomacy: Foundation Model Pre-training across Particle Imaging Detectors for High Energy and Nuclear Physics
Samuel Young, César Jesús-Valls, Kazuhiro Terao
Abstract
Foundation models are increasingly being pursued in particle and nuclear physics, but existing approaches remain strongly tied to individual experiments through detector-specific architectures or pre-training objectives, limiting their reuse across sensing modalities. We show that a point cloud self-distillation framework yields a substantially more general sensor-level pre-training recipe. We show that the same refined architecture and objective can be independently pre-trained with minimal changes on three qualitatively different detector modalities: liquid argon time projection chamber (LArTPC), collider TPC, and water Cherenkov. Using 1,000 labeled images for downstream task adaptation, Panda V2 matches or exceeds specialized foundation-model baselines trained with orders of magnitude more supervision, matching state-of-the-art particle-clustering performance with 70x fewer labeled events on sPHENIX while substantially improving particle identification, and on LArTPC data matching Panda (arXiv:2512.01324) particle reconstruction with up to 1,000x fewer labels. Beyond reconstruction, simple linear probes reveal physically meaningful latent structure associated with particle causality and track curvature.
Create a lesson
Related papers
Effective Sub-Quantum Readout for Non-Monochromatic Axion Signals in High-Q Haloscopes
Junu Jeong, Max Silva-Feaver
Search for dark matter particle interactions in an extended nuclear recoil energy window with the LUX-ZEPLIN (LZ) experiment
D. S. Akerib, A. K. Al Musalhi, B. J. Almquist et al.
Measurement of inelastic scattering Λ(Λ)+pΣ0(Σ0)+p via e+e- J/ψΛΛ
BESIII Collaboration, M. Ablikim, M. N. Achasov et al.
Stringent limits on C\!PT- and Lorentz-invariance violation from Bs0~meson decays
LHCb collaboration, R. Aaij, M. Abdelfatah et al.
Observation of ψ(3686) p K- KS0 Ξ0+c.c.
BESIII Collaboration, M. Ablikim, M. N. Achasov et al.
Search for the baryonic decay Ds*+ \ p n
BESIII Collaboration, M. Ablikim, M. N. Achasov et al.