The environmental dependence of the structure of galactic discs in STAGES S0 galaxies: implications for S0 formation
David T. Maltby (1), Alfonso Arag\'on-Salamanca (1), Meghan E. Gray, (1), Carlos Hoyos (2), Christian Wolf (3), Shardha Jogee (4), Asmus Boehm (5), ((1) Nottingham, (2) S\~ao Paulo, (3) ANU, (4) UT Austin, (5) Innsbruck)

TL;DR
This study analyzes the structure of S0 galaxy discs across different environments, revealing that environment has little effect on disc properties and suggesting internal processes drive morphological transformation from spirals to S0s.
Contribution
It provides new insights into the environmental independence of S0 disc structures and highlights the role of internal processes in their formation, supported by detailed surface brightness profile analysis.
Findings
Approximately 25% of S0s have pure exponential discs.
No significant environmental dependence on disc scalelength or break strength.
Bulge light accounts for large-radius excess in up to 50% of S0s.
Abstract
We present an analysis of V-band radial surface brightness {\mu}(r) profiles for S0s in different environments using HST/ACS imaging and data from the Space Telescope A901/2 Galaxy Evolution Survey (STAGES). Using a sample of ~280 field and cluster S0s, we find that in both environments, ~25 per cent have a pure exponential disc (Type I) and ~50 per cent exhibit an up-bending disc break (antitruncation, Type III). However, we find hardly any (< 5 per cent) down-bending disc breaks (truncations, Type II) in our S0s and many cases (~20 per cent) where no exponential component was observed. We also find no evidence for an environmental dependence on the disc scalelength or break strength (outer-to-inner scalelength ratio), implying that the galaxy environment does not affect the stellar distribution in S0 stellar discs. Comparing disc structure between these S0s and the spirals from our…
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