Photometric scaling relations of antitruncated stellar discs in S0-Scd galaxies
M. Carmen Eliche-Moral (1), Alejandro Borlaff (2), John E. Beckman, (2,3,4), and Leonel Gutierrez (5) ((1) Universidad Complutense de Madrid, (2), Instituto de Astrofisica de Canarias, (3) Universidad de La Laguna, (4), Consejo Superior de Investigaciones Cientificas, Spain

TL;DR
This study reveals that antitruncated stellar discs in S0-Scd galaxies follow consistent photometric scaling relations across different types, suggesting a universal formation mechanism regardless of galaxy morphology or bar presence.
Contribution
It demonstrates that the tight scaling relations of antitruncated discs are consistent across multiple galaxy types, extending previous findings from S0 galaxies.
Findings
Antitruncated discs obey tight scaling relations across galaxy types.
Correlations are significant and linear in log-scalelength plots.
Normalization to galaxy optical radius enhances correlation significance.
Abstract
It has been recently found that the characteristic photometric parameters of antitruncated discs in S0 galaxies follow tight scaling relations. We investigate if similar scaling relations are satisfied by galaxies of other morphological types. We have analysed the trends in several photometric planes relating the characteristic surface brightness and scalelengths of the breaks and the inner and outer discs of local antitruncated S0-Scd galaxies, using published data and fits performed to the surface brightness profiles of two samples of Type-III galaxies in the R and Spitzer 3.6 microns bands. We have performed linear fits to the correlations followed by different galaxy types in each plane, as well as several statistical tests to determine their significance. We have found that: 1) the antitruncated discs of all galaxy types from Sa to Scd obey tight scaling relations both in R and 3.6…
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