Modelling the scattering by porous aggregate dust grains in the Far-Ultraviolet halos of Spica and Achernar

Fuente: arXiv
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Autores principales: Choudhury, Nilanjana Dey, Shalima, P., U., Keerthana, Murthy, J.
Formato: Preprint
Publicado: 2025
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author Choudhury, Nilanjana Dey
Shalima, P.
U., Keerthana
Murthy, J.
author_facet Choudhury, Nilanjana Dey
Shalima, P.
U., Keerthana
Murthy, J.
contents Far-Ultraviolet (FUV) halos have been detected around six bright stars by Murthy and Henry (2011) using GALEX observations. These halos are thought to be caused by forward scattering of the starlight by dust grains present in thin foreground clouds. The optical constants of grains producing such halos have been constrained earlier by using a single scattering model, that considered the Henyey-Greenstein empirical phase function instead of theoretical phase functions for the scattering grains. In this work, we have modelled the FUV halos for two stars, Spica and Achernar, by considering the realistic porous aggregates of different sizes and compositions. As the Henyey-Greenstein phase function is known to deviate from theoretical predictions, we have utilized theoretical scattering phase functions for modelling. The dust is placed in a double-layered plane-parallel sheet with its distance and optical depth varied to get the best fit. We find that the halo intensities are dominated by scattering due to 0.05 μm sized porous dust aggregates made of amorphous silicate and carbonaceous aggregates for Spica and Achernar, respectively. We find that the medium in front of Achernar has a lower optical depth (τ) of 0.032 compared to Spica which has a value of τ = 0.1. This low value is close to the optical depth of the local ISM (0.01) within 40 pc of the Sun. This study demonstrates an effective method to constrain the dust grain properties in the local interstellar medium.
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id arxiv_https___arxiv_org_abs_2510_21212
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Modelling the scattering by porous aggregate dust grains in the Far-Ultraviolet halos of Spica and Achernar
Choudhury, Nilanjana Dey
Shalima, P.
U., Keerthana
Murthy, J.
Astrophysics of Galaxies
Far-Ultraviolet (FUV) halos have been detected around six bright stars by Murthy and Henry (2011) using GALEX observations. These halos are thought to be caused by forward scattering of the starlight by dust grains present in thin foreground clouds. The optical constants of grains producing such halos have been constrained earlier by using a single scattering model, that considered the Henyey-Greenstein empirical phase function instead of theoretical phase functions for the scattering grains. In this work, we have modelled the FUV halos for two stars, Spica and Achernar, by considering the realistic porous aggregates of different sizes and compositions. As the Henyey-Greenstein phase function is known to deviate from theoretical predictions, we have utilized theoretical scattering phase functions for modelling. The dust is placed in a double-layered plane-parallel sheet with its distance and optical depth varied to get the best fit. We find that the halo intensities are dominated by scattering due to 0.05 μm sized porous dust aggregates made of amorphous silicate and carbonaceous aggregates for Spica and Achernar, respectively. We find that the medium in front of Achernar has a lower optical depth (τ) of 0.032 compared to Spica which has a value of τ = 0.1. This low value is close to the optical depth of the local ISM (0.01) within 40 pc of the Sun. This study demonstrates an effective method to constrain the dust grain properties in the local interstellar medium.
title Modelling the scattering by porous aggregate dust grains in the Far-Ultraviolet halos of Spica and Achernar
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2510.21212