The volumetric star formation law in nearby galaxies episode artwork

EPISODE · Nov 30, 2022 · 0 MIN

The volumetric star formation law in nearby galaxies

from Astro arXiv | all categories · host Corentin Cadiou

The volumetric star formation law in nearby galaxies by C. Bacchini et al. on Wednesday 30 November Star formation laws are empirical relations between the cold gas (HI+H$_2$) content of a galaxy and its star formation rate (SFR), being crucial for any model of galaxy formation and evolution. A well known example of such laws is the Schmidt-Kennicutt law, which is based on the projected surface densities. However, it has been long unclear whether a more fundamental relation exists between the intrinsic volume densities. By assuming the vertical hydrostatic equilibrium, we infer radial profiles for the thickness of gaseous discs in a sample of 23 local galaxies, and use these measurements to convert the observed surface densities of the gas and the SFR into the de-projected volume densities. We find a tight correlation linking these quantities, that we call the volumetric star formation law. This relation and its properties have crucial implications for our understanding of the physics of star formation. arXiv: http://arxiv.org/abs/http://arxiv.org/abs/2211.16538v1

Episode metadata supplied by the publisher feed · Published Nov 30, 2022

Embed this episode

NOW PLAYING

The volumetric star formation law in nearby galaxies

0:00 0:34

No transcript for this episode yet

We transcribe on demand. Request one and we'll notify you when it's ready — usually under 10 minutes.

No similar episodes found.

No similar podcasts found.

Frequently Asked Questions

How long is this episode of Astro arXiv | all categories?

This episode is 0 minutes long.

When was this Astro arXiv | all categories episode published?

This episode was published on November 30, 2022.

Can I download this Astro arXiv | all categories episode?

Yes. Use the download control on the episode player to save the publisher-provided media file.
URL copied to clipboard!