Carina’s pillars of destruction: the view from ALMA

Author:

Klaassen P D1ORCID,Reiter M R1ORCID,McLeod A F23,Mottram J C4,Dale J E5,Gritschneder M6

Affiliation:

1. UK Astronomy Technology Centre, Royal Observatory Edinburgh, Blackford Hill, Edinburgh EH9 3HJ, UK

2. Department of Astronomy, University of California Berkeley, Berkeley, CA 94720, USA

3. Department of Physics and Astronomy, Texas Tech University, PO Box 41051, Lubbock, TX 79409, USA

4. Max Planck Institute for Astronomy, Königstuhl 17, D-69117 Heidelberg, Germany

5. Centre for Astrophysics Research, University of Hertfordshire, College Lane, Hatfield AL10 9AB, UK

6. Ludwig-Maximilians-Universität Munchen, Universitäts-Sternwarte, Scheinerstr. 1, D-81679 Munich, Germany

Abstract

ABSTRACT Forming high-mass stars have a significant effect on their natal environment. Their feedback pathways, including winds, outflows, and ionizing radiation, shape the evolution of their surroundings which impacts the formation of the next generation of stars. They create or reveal dense pillars of gas and dust towards the edges of the cavities they clear. They are modelled in feedback simulations, and the sizes and shapes of the pillars produced are consistent with those observed. However, these models predict measurably different kinematics which provides testable discriminants. Here we present the first ALMA Compact Array (ACA) survey of 13 pillars in Carina, observed in 12CO, 13CO, and C18O J = 2–1, and the 230 GHz continuum. The pillars in this survey were chosen to cover a wide range in properties relating to the amount and direction of incident radiation, proximity to nearby irradiating clusters and cloud rims, and whether they are detached from the cloud. With these data, we are able to discriminate between models. We generally find pillar velocity dispersions of <1 km s−1 and that the outer few layers of molecular emission in these pillars show no significant offsets from each other, suggesting little bulk internal motions within the pillars. There are instances where the pillars are offset in velocity from their parental cloud rim, and some with no offset, hinting at a stochastic development of these motions.

Funder

European Research Council

Horizon 2020

Marie Skĺodoska-Curie

Science and Technology Facilities Council

NASA

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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