
During February 2025, work focused on integrating a new RECOIL detector into the CLAS12 simulation and reconstruction framework within the JeffersonLab/coatjava repository. This involved defining detector types, geometry constants, and implementing Geant4 geometry factories alongside modular strip and reconstruction data-processing factories. Using C++ and Java, the developer modeled detector geometry and applied factory design patterns to ensure clean, maintainable integration. The addition of the RECOIL detector enhanced simulation fidelity and reconstruction capabilities, supporting more realistic physics analyses and detector studies. No major bugs were addressed during this period, with efforts concentrated on feature development and modular system architecture.
February 2025 — JeffersonLab/coatjava: Delivered RECOIL detector integration for CLAS12 simulation and reconstruction. Implemented detector type, geometry constants, Geant4 geometry factories, and strip/reconstruction data-processing factories to enable a new RECOIL detector in the CLAS12 workflow. This extends simulation fidelity and reconstruction capabilities, directly supporting more realistic physics analyses and detector studies. Commit aedb62de479b1bc5df6db07be3a9228d36e00107 documents the new recoil detector for RGH (2 sectors, 3 layers/sector of urwell, x/…). No major bugs fixed this month. Technologies demonstrated include C++, Geant4 geometry, detector geometry modeling, and factory design patterns, reinforcing modularity and maintainability. Overall impact: higher-fidelity simulations, improved analysis throughput, and stronger readiness for upcoming CLAS12 physics campaigns.
February 2025 — JeffersonLab/coatjava: Delivered RECOIL detector integration for CLAS12 simulation and reconstruction. Implemented detector type, geometry constants, Geant4 geometry factories, and strip/reconstruction data-processing factories to enable a new RECOIL detector in the CLAS12 workflow. This extends simulation fidelity and reconstruction capabilities, directly supporting more realistic physics analyses and detector studies. Commit aedb62de479b1bc5df6db07be3a9228d36e00107 documents the new recoil detector for RGH (2 sectors, 3 layers/sector of urwell, x/…). No major bugs fixed this month. Technologies demonstrated include C++, Geant4 geometry, detector geometry modeling, and factory design patterns, reinforcing modularity and maintainability. Overall impact: higher-fidelity simulations, improved analysis throughput, and stronger readiness for upcoming CLAS12 physics campaigns.

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