
Worked on the AliceO2Group/O2DPG and AliceO2Group/O2Physics repositories, delivering targeted features for high energy physics workflows. Developed configurable generation of undecayed Xi_c+ particles for 13 TeV proton-proton collisions, introducing separate configuration files for XiC0 and XiC+ to support reproducible and focused analyses. Emphasized configuration management and test-driven development using C++, INI, and YAML, ensuring robust validation of new workflows. Additionally, updated code ownership governance in O2Physics by designating explicit maintainers for PWGHF components, streamlining review processes and onboarding. The work demonstrated depth in infrastructure, Monte Carlo simulation, and domain-specific configuration for particle physics research pipelines.
Month 2025-10 focused on strengthening governance and ownership within the O2Physics repository. Delivered a Code Ownership Governance Update to explicitly designate Xinye as code owner for PWGHF and Tutorials/PWGHF, aligning ownership with team responsibilities and enabling more efficient reviews and onboarding.
Month 2025-10 focused on strengthening governance and ownership within the O2Physics repository. Delivered a Code Ownership Governance Update to explicitly designate Xinye as code owner for PWGHF and Tutorials/PWGHF, aligning ownership with team responsibilities and enabling more efficient reviews and onboarding.
August 2025 (AliceO2Group/O2DPG) focused on delivering configurable generation of undecayed Xi_c+ particles for 13 TeV pp collisions. Implemented separate configurations for XiC0 and XiC+ with accompanying tests to validate setup. No major bugs fixed this period. Impact: improved analysis readiness and reproducibility for Xi_c+ physics; codebase now supports targeted undecayed particle generation in the 13 TeV pp pipeline. Skills demonstrated: config management, test-oriented development, version control, and domain-specific physics configuration.
August 2025 (AliceO2Group/O2DPG) focused on delivering configurable generation of undecayed Xi_c+ particles for 13 TeV pp collisions. Implemented separate configurations for XiC0 and XiC+ with accompanying tests to validate setup. No major bugs fixed this period. Impact: improved analysis readiness and reproducibility for Xi_c+ physics; codebase now supports targeted undecayed particle generation in the 13 TeV pp pipeline. Skills demonstrated: config management, test-oriented development, version control, and domain-specific physics configuration.

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