Self-consistent grain depletions and abundances I: the Orion Nebula as a test case

Author:

Gunasekera Chamani M1ORCID,Ji Xihan1ORCID,Chatzikos Marios1ORCID,Yan Renbin2,Ferland Gary1

Affiliation:

1. Department of Physics & Astronomy, University of Kentucky , Lexington, KY 40506, USA

2. Department of Physics, The Chinese University of Hong Kong , Shatin, N.T., Hong Kong S.A.R., People’s Republic of China

Abstract

ABSTRACT Atomic species in the interstellar medium transition out of their gas phase mainly by depletion on to dust. In this study, we examine if there is any change to the spectral-line ratio predictions from a photoionization model of the Orion H ii region when the degree of dust depletions is altered according to the most recently published model. We use equations and parameters published by previous works, in order to streamline the calculation of depleted abundances within cloudy. Our aim is for cloudy users to be able to vary the level of depletion using a single parameter in the input file. This makes it possible to explore predictions for a large range of depletions more efficiently. Finally, we discuss the results obtained for a model of the Orion Nebula when the degree of depletions are manipulated in this way. We found that the intensity of line ratios are significantly affected by depletions on to dust grains. Further, we found that adjusting dust abundances along with depletion affects the structure and the overall temperature of the H+ layer across the H ii region.

Funder

NSF

NASA

Space Telescope Science Institute

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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