
Developed an end-to-end DP1 Object Simulation Notebook for the lincc-frameworks/notebooks_lf repository, enabling reproducible prototyping and quality assurance for DP1 astrophysical scenarios. Leveraging Python and Jupyter Notebook, the work integrated TDAstro to simulate DP1 objects, incorporating observation logs, passband configuration, and SALT2-H17 light curve generation. The notebook featured quality cuts, visualization tools, and parameter refinement for host galaxies and light curves, with comprehensive documentation and references to support knowledge transfer. Through a series of commits, the developer scaffolded and stabilized the notebook, improving its compatibility and usability for scientific computing and data analysis in astrophysics research.
July 2025 — Lincc notebooks LF: Delivered an end-to-end DP1 Object Simulation Notebook using TDAstro in lincc-frameworks/notebooks_lf. The notebook supports DP1 object simulation with observation logs, passband setup, SALT2-H17 light curve generation, quality cuts, visualization, and refined host-galaxy/light-curve parameters, with integrated references. Work advanced through four commits that scaffolded and stabilized the notebook, enabling reproducible DP1 scenario prototyping and QA readiness.
July 2025 — Lincc notebooks LF: Delivered an end-to-end DP1 Object Simulation Notebook using TDAstro in lincc-frameworks/notebooks_lf. The notebook supports DP1 object simulation with observation logs, passband setup, SALT2-H17 light curve generation, quality cuts, visualization, and refined host-galaxy/light-curve parameters, with integrated references. Work advanced through four commits that scaffolded and stabilized the notebook, enabling reproducible DP1 scenario prototyping and QA readiness.

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