Diffuse interstellar bands as dust indicators: the contribution from 3D maps
R. Lallement, J.L. Vergely, N.L.J. Cox

TL;DR
This study leverages 3D maps of diffuse interstellar bands (DIBs) and dust properties to explore their relationships, revealing correlations with dust extinction, Rv, and dust emission spectral index, and examining the UV bump's connection to DIBs.
Contribution
It introduces a comprehensive 3D mapping approach to analyze DIBs and dust indicators, providing new insights into their spatial correlations and dependencies.
Findings
DIBn862 increases with R'v at low to moderate extinctions.
DIBn862 is anti-correlated with the Planck opacity spectral index beta.
The UV bump's height is not clearly linked to DIBs, especially across different cloud types.
Abstract
We used 3D maps of 862nm DIB equivalent width (EW) and extinction, DIB catalogues, and measured parameters of dust extinction law and dust emission to study relationships between DIB and extinction level, total-to-selective extinction ratio Rv, dust emission spectral index beta. We revisited the link between several DIBs and the 220nm absorption bump. The ratio, DIBn862, between the 862nm DIB carrier density and the extinction density is increasing in low density clouds, confirming with local values the line-of-sight data. A fitted power law ranks this DIB in the high increase range among the 20 bands measured toward SDSS targets. Using map-integrated 862nm DIB EWs and extinctions along the paths to APOGEE targets with proxies R'v for Rv, we found that DIBn862 increases with R'v for low to moderate extinctions (Av<2-3 mag). Based on stars outside the thin disk, DIBn862 is found to be…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Space Exploration and Technology · Astro and Planetary Science
