
Worked on the DUNE/duneana repository to enhance the accuracy of PFParticles containment flag calculations within high energy physics analysis software. Updated the wall distance computation to utilize particle-specific space points, improving the reliability of containment assessments and aligning the duneanaobj dependency with a new utility method for better maintainability. Addressed a configuration issue by correcting the fContainedDistThreshold parameter type from string to double, ensuring proper numeric handling in the C++ codebase. Leveraged expertise in C++, the DUNE Experiment Framework, and physics software development to deliver targeted improvements that reduce misclassification and streamline future updates through clearer configuration and dependency management.
June 2026 monthly summary for DUNE/duneana: Delivered PFParticles containment flag accuracy improvements by updating wall distance calculation to use particle-specific space points and aligning the duneanaobj dependency with a new utility method; fixed a configuration issue by correcting fContainedDistThreshold type from string to double. These changes enhance analysis reliability, reduce misclassification, and improve maintainability with updated dependencies.
June 2026 monthly summary for DUNE/duneana: Delivered PFParticles containment flag accuracy improvements by updating wall distance calculation to use particle-specific space points and aligning the duneanaobj dependency with a new utility method; fixed a configuration issue by correcting fContainedDistThreshold type from string to double. These changes enhance analysis reliability, reduce misclassification, and improve maintainability with updated dependencies.

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