high-performance modeling of beam dynamics in particle accelerators with collective effects
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Updated
Sep 30, 2026 - C++
high-performance modeling of beam dynamics in particle accelerators with collective effects
Suite of python packages for multiparticle simulations of particle accelerators.
Tool for simulating particle accelerators. Models beam dynamics, tracks particles, optimizes accelerator parameters.
The Adaptable Beginning-to-End Linac (ABEL) framework: numerical modelling of particle accelerators with adaptable simulation complexity
Particle Tracking Module for Python
Symplectic nonlinear beam-dynamics simulator with TPSA, Lie algebra, normal forms, resonance analysis and 6D particle tracking.
Repository filled with functions related to the analysis of longitudinal beam dynamics measurements and simulations
Python package for beam dynamic analysis well-suited for laser-wakefield acceleration
Accelerator lattice translator: 28 formats through one intermediate representation, a fidelity ledger on every conversion, validated against 17 simulation engines
HELIX — Hybrid Envelope-multiparticle LInac eXplorer: TraceWin-compatible linac simulation with 3-D PIC space charge, matching, a PyQt6 workbench, and an optional offline AI assistant. Developed at Fermilab for PIP-II.
Repository of input files to simulate beams in the SPS and the behavior when injected into the LHC
Football Manager is a fully functional Web App that allows you to manage the data of a football team.
Repository for all the files that went in to test and validate the SPS OTFB.
Transfer matrix measurements using a recursive least-squares algorithm
A 3D viewer for accelerator lattices: every lattice lattix reads, drawn element by element on its survey coordinates, with measurement tools and exports
Repo to analyze data taken during the LHC RF MD performed on Sunday November 6th 2022.
Analysis of the beam based voltage calibration performed on the LHC RF system cavity-by-cavity.
Repository for files related to simulations, testing and benchmarking the LHC cavity controller model.
A fully electromagnetic 2.5-dimensional particle-in-cell code designed for simulating RF guns and similar systems with cylindrical symmetry.
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