Physical Conditions in Orion’s Veil
- 1 July 2004
- journal article
- Published by American Astronomical Society in The Astrophysical Journal
- Vol. 609 (1) , 247-260
- https://doi.org/10.1086/421009
Abstract
Orion's veil consists of several layers of largely neutral gas lying between us and the main ionizing stars of the Orion nebula. It is visible in 21cm H I absorption and in optical and UV absorption lines of H I and other species. Toward the Trapezium, the veil has two remarkable properties, high magnetic field (~100 microGauss) and a surprising lack of molecular hydrogen given its total hydrogen column density. Here we compute photoionization models of the veil to establish its gas density and its distance from the Trapezium. We use a greatly improved model of the hydrogen molecule that determines level populations in ~1e5 rotational/vibrational levels and provides improved estimates of molecular hydrogen destruction via the Lyman-Werner bands. Our best fit photoionization models place the veil 1-3 pc in front of the star at a density of 1e3-1e4 cubic centimeters. Magnetic energy dominates the energy of non-thermal motions in at least one of the 21cm H I velocity components. Therefore, the veil is the first interstellar environment where magnetic dominance appears to exist. We find that the low ratio of molecular to atomic hydrogen (< 1e-4) is a consequence of high UV flux incident upon the veil due to its proximity to the Trapezium stars and the absence of small grains in the region.Keywords
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This publication has 42 references indexed in Scilit:
- Inferring Physical Conditions in Interstellar Clouds of H2The Astrophysical Journal, 2003
- Disks, Microjets, Windblown Bubbles, and Outflows in the Orion NebulaThe Astronomical Journal, 2000
- Total transition probability and spontaneous radiative dissociation of B, C, B' and D states of molecular hydrogenAstronomy and Astrophysics Supplement Series, 2000
- Emission‐Line Helium Abundances in Highly Obscured NebulaePublications of the Astronomical Society of the Pacific, 1999
- Luminosity Indicators in Dusty Photoionized EnvironmentsPublications of the Astronomical Society of the Pacific, 1998
- Nonequilibrium Photodissociation Regions: Ionization-Dissociation FrontsThe Astrophysical Journal, 1996
- Physical conditions in the Orion Nebula and an assessment of its helium abundanceThe Astrophysical Journal, 1991
- The relationship between infrared, optical, and ultraviolet extinctionThe Astrophysical Journal, 1989
- Ultraviolet interstellar extinction toward stars in the Orion Nebula and toward HD 147889The Astrophysical Journal, 1981
- Photodissociation of vibrationally excited H2, HD, and D2 by absorption into the continua of the Lyman and Werner systemsAtomic Data and Nuclear Data Tables, 1969