dfm / dfm/python-fsps

Nebular emission and choice of IMF, stellar library

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Dominant language
Python
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Description

Hi. I was reading through the arXiv paper by @nell-byler about implementing nebular continuum and emission into python-fsps and had a question. If I understand correctly, the user can switch on nebular continuum and emission for both the Padova+Geneva isochrones and the MIST isochrones and have the nebular effects be implemented self-consistently for both. However, for other choices (e.g., IMF and stellar libraries) is it true that the nebular effects are only self-consistent for the selection of the Kroupa (2001) IMF and the BaSeL 3.1 spectral library and that changing these will result in inconsistent results?
For example, if I need the higher wavelength resolution of the MILES library and want to include nebular effects, do I need to worry that my nebular fluxes are not really correct? Thanks.

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Research direction

The issue asks whether nebular continuum and emission remain self-consistent across isochrone, IMF, and stellar-library choices, but names no source file or test. Start by reviewing the referenced arXiv paper and the python-fsps documentation for nebular settings. Done means documenting which combinations are self-consistent and how MILES users should interpret nebular fluxes.

Written by the indexing model from the issue text.

Assessment

Tech stack
python
Domain
data
Issue type
Documentation
Difficulty
4/5
Estimated time
3-5 days
Activity status
Stale
Clarity
Needs clarification
Newbie friendliness
25/100

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