4.7 Article

A polycrystalline graphite model for the 2175 Å interstellar extinction band

Journal

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY
Volume 394, Issue 4, Pages 2175-2181

Publisher

WILEY-BLACKWELL PUBLISHING, INC
DOI: 10.1111/j.1365-2966.2009.14484.x

Keywords

astrochemistry-molecular processes; dust, extinction

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A random, hydrogen-free, assembly of microscopic sp(2) carbon chips, forming a macroscopically homogeneous and isotropic solid. is proposed as a model carrier for the Ultraviolet (UV) interstellar extinction band. The validity of this model is based oil the calculation of the Bruggeman average dielectric function of a mixture of the known parallel and perpendicular dielectric functions of graphite. The pi absorption feature of Rayleigh-sized spheres of this mixture falls near 4.6 mu m(-1) (2 175 angstrom) but its width is 1.5 mu m(-1) somewhat larger than the astronomically observed average, 1 mu m(-1). This is confirmed by measurements of the reflectance of an industrial material, polycrystalline graphite. A better fit to the interstellar feature Position and width is obtained with a hypothetical material, having the same dielectric functions as natural graphite, except for less extended wings of the 7 resonance. Physically. this Could result from changes in the electronic band structure Clue to previous thermal histories. Ill this model, the Frolich feature central wavelength depends only oil the pi resonance frequency. while its width depends only oil the damping constant of the same resonance. This explains the range of observed feature widths at constant feature wavelength.

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