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Anirban

PROFILE

Anirban

Over a three-month period, contributed to the tardis-sn/tardis repository by enhancing gamma-ray spectral simulation capabilities and developing a high-energy gamma-ray transport workflow. Refactored gamma-ray packet handling and energy deposition using Python and Numba, introducing time evolution of isotopic decays and improved positronium sampling to yield more accurate astrophysical spectra. Established a reusable workflow class and an example Jupyter Notebook to support reproducible high-energy simulations. Additionally, improved project documentation by integrating and citing the radioactivedecay package in both README.rst and BibTeX files. The work emphasized scientific computing, technical writing, and reproducibility in high-performance astrophysics simulation pipelines.

Overall Statistics

Feature vs Bugs

100%Features

Repository Contributions

3Total
Bugs
0
Commits
3
Features
3
Lines of code
2,012
Activity Months3

Work History

August 2025

1 Commits • 1 Features

Aug 1, 2025

Concise monthly summary for tardis-sn/tardis (2025-08) focusing on business value and technical achievements.

May 2025

1 Commits • 1 Features

May 1, 2025

May 2025: Delivered a new High Energy Gamma-Ray Transport Workflow for TARDIS, establishing a reusable workflow class and an example notebook. No major bugs fixed this month; stability of existing pipelines maintained while adding significant capability for researchers to run high-energy gamma-ray transport simulations more reproducibly and efficiently. Overall, this work strengthens TARDIS' simulation capabilities and accelerates planning and execution of high-energy studies.

February 2025

1 Commits • 1 Features

Feb 1, 2025

February 2025: Gamma-ray Spectral Simulation Enhancements in TARDIS were delivered, featuring a full refactor of gamma-ray packet handling and energy deposition, along with time evolution of isotopic decays and improved positronium sampling to yield more accurate gamma-ray spectra from radioactive decay in astrophysical environments.

Activity

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Quality Metrics

Correctness93.4%
Maintainability86.6%
Architecture93.4%
Performance86.6%
AI Usage20.0%

Skills & Technologies

Programming Languages

BibTeXJupyter NotebookNumbaPythonRst

Technical Skills

Astrophysics SimulationData AnalysisDocumentationHigh-Energy PhysicsHigh-Performance ComputingJupyter NotebooksMonte Carlo MethodsNuclear Decay ModelingNumbaPythonScientific ComputingTechnical Writing

Repositories Contributed To

1 repo

Overview of all repositories you've contributed to across your timeline

tardis-sn/tardis

Feb 2025 Aug 2025
3 Months active

Languages Used

NumbaPythonJupyter NotebookBibTeXRst

Technical Skills

Astrophysics SimulationData AnalysisHigh-Performance ComputingMonte Carlo MethodsNuclear Decay ModelingNumba