The Local Bubble is a Local Chimney: A New Model from 3D Dust Mapping

Fuente: arXiv
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Main Authors: O'Neill, Theo J., Zucker, Catherine, Goodman, Alyssa A., Edenhofer, Gordian
Format: Preprint
Published: 2024
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author O'Neill, Theo J.
Zucker, Catherine
Goodman, Alyssa A.
Edenhofer, Gordian
author_facet O'Neill, Theo J.
Zucker, Catherine
Goodman, Alyssa A.
Edenhofer, Gordian
contents Leveraging a high-resolution 3D dust map of the solar neighborhood from Edenhofer et al. (2024), we derive a new 3D model for the dust-traced surface of the Local Bubble, the supernova-driven cavity surrounding the Sun. We find that the surface of the Local Bubble is highly irregular in shape, with its peak extinction surface falling at an average distance of 170 pc from the Sun (spanning 70-600+ pc) with a typical thickness of 35 pc and a total dust-traced mass of $(6.0 \pm 0.7) \times 10^5 \ \rm{M}_{\odot}$. The Local Bubble displays an extension in the Galactic Northern hemisphere that is morphologically consistent with representing a "Local Chimney." We argue this chimney was likely created by the "bursting" of this supernova-driven superbubble, leading to the funneling of interstellar medium ejecta into the lower Galactic halo. We find that many well-known dust features and molecular clouds fall on the surface of the Local Bubble and that several tunnels to other adjacent cavities in the interstellar medium may be present. Our new, parsec-resolution view of the Local Bubble may be used to inform future analysis of the evolution of nearby gas and young stars, the investigation of direct links between the solar neighborhood and the Milky Way's lower halo, and numerous other applications.
format Preprint
id arxiv_https___arxiv_org_abs_2403_04961
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The Local Bubble is a Local Chimney: A New Model from 3D Dust Mapping
O'Neill, Theo J.
Zucker, Catherine
Goodman, Alyssa A.
Edenhofer, Gordian
Astrophysics of Galaxies
Leveraging a high-resolution 3D dust map of the solar neighborhood from Edenhofer et al. (2024), we derive a new 3D model for the dust-traced surface of the Local Bubble, the supernova-driven cavity surrounding the Sun. We find that the surface of the Local Bubble is highly irregular in shape, with its peak extinction surface falling at an average distance of 170 pc from the Sun (spanning 70-600+ pc) with a typical thickness of 35 pc and a total dust-traced mass of $(6.0 \pm 0.7) \times 10^5 \ \rm{M}_{\odot}$. The Local Bubble displays an extension in the Galactic Northern hemisphere that is morphologically consistent with representing a "Local Chimney." We argue this chimney was likely created by the "bursting" of this supernova-driven superbubble, leading to the funneling of interstellar medium ejecta into the lower Galactic halo. We find that many well-known dust features and molecular clouds fall on the surface of the Local Bubble and that several tunnels to other adjacent cavities in the interstellar medium may be present. Our new, parsec-resolution view of the Local Bubble may be used to inform future analysis of the evolution of nearby gas and young stars, the investigation of direct links between the solar neighborhood and the Milky Way's lower halo, and numerous other applications.
title The Local Bubble is a Local Chimney: A New Model from 3D Dust Mapping
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2403.04961