Ultraviolet extinction correlation with 3D dust maps using white dwarfs
Snehalata Sahu, Pier-Emmanuel Tremblay, Rosine Lallement, Seth, Redfield, Boris T. Gaensicke

TL;DR
This study validates 3D dust extinction maps for UV and optical wavelengths using white dwarf observations, confirming their reliability for dereddening Galactic sources within 300 pc.
Contribution
It provides the first comparison of UV extinction with 3D dust maps using white dwarfs, demonstrating their accuracy in the UV regime.
Findings
UV reddening coefficients are consistent with known extinction laws.
3D dust maps show a slight positive bias in optical extinction estimates.
Results confirm 3D dust maps' validity for UV and optical dereddening.
Abstract
Accurate astrometric and photometric measurements from Gaia have led to the construction of 3D dust extinction maps which can now be used for estimating the integrated extinctions of Galactic sources located within 5 kpc. These maps based on optical observations may not be reliable for use in the ultraviolet (UV) which is more sensitive to reddening. Past studies have focused on studying UV extinction using main-sequence stars but lack comparison with 3D dust maps. White dwarfs with well-modeled hydrogen-dominated (DA) atmospheres provide an advantage over main-sequence stars affected by magnetic activity. In this work, we study the variation of UV extinction with 3D dust maps utilising HST and GALEX observations of DA white dwarfs located within 300 pc. We used HST COS spectroscopic data of 76 sight lines to calculate the optical extinction from Si II column densities and validate our…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Gamma-ray bursts and supernovae · Astro and Planetary Science
