Code to compute exact two-, three-, and four-flavor neutrino oscillation probabilities using SU(2), SU(3), and SU(4) expansions
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Updated
Sep 4, 2026 - Jupyter Notebook
Code to compute exact two-, three-, and four-flavor neutrino oscillation probabilities using SU(2), SU(3), and SU(4) expansions
Cosmic muons telescope based on plastic scintillators, SiPMs and gaseous detector
Data Analysis and Machine Learning Models for High Energy Physics and Particle Physics experiments associated with ATLAS and CMS detectors.
Reproducible spectral computations on the Sierpiński gasket — an honest, test-driven audit of a fermion mass-formula conjecture. Every claim is verified, rejected, or explicitly marked open. No black boxes. 14/14 tests passing.
Tensor based engine for calculating neutrino oscillation probabilities in a fast, flexible, and differentiable way
This is a transformer model that does particle track fitting
A simulation of the Bloch Beamline at the MAX IV synchrotron in Lund, Sweden. The simulation is implemented in the McXtrace meta-language using ANSI-C.
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