Families and Clusters of Diffuse Interstellar Bands: a Data-Driven Correlation Analysis
Haoyu Fan, Madison Schwartz, Amin Farhang, Nick L. J. Cox, Pascale, Ehrenfreund, Ana Monreal-Ibero, Bernard H. Foing, Farid Salama, Klay Kulik,, Heather MacIsaac, Jacco Th. van Loon, and Jan Cami

TL;DR
This study analyzes correlations among over 500 diffuse interstellar bands across various interstellar environments, revealing anti-correlated pairs, clustering into families, and suggesting gradual changes in carrier properties.
Contribution
It applies data-driven clustering and visualization techniques to identify DIB families and interpret their properties, advancing understanding of DIB carriers.
Findings
12.9% of DIB pairs are anti-correlated
DIBs form a continuous sequence in property space
At least two factors explain DIB dissimilarities
Abstract
More than 500 diffuse interstellar bands (DIBs) have been observed in astronomical spectra, and their signatures and correlations in different environments have been studied over the past decades to reveal clues about the nature of the carriers. We compare the equivalent widths of the DIBs, normalized to the amount of reddening, E_B-V, to search for anti-correlated DIB pairs using a data sample containing 54 DIBs measured in 25 sight lines. This data sample covers most of the strong and commonly detected DIBs in the optical region, and the sight lines probe a variety of ISM conditions. We find that 12.9% of the DIB pairs are anti-correlated, and the lowest Pearson correlation coefficient is r_norm ~ -0.7. We revisit correlation-based DIB families and are able to reproduce the assignments of such families for the well-studied DIBs by applying hierarchical agglomerative and k-means…
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