The vertical structure of the stellar disk in NGC 551
Harshal Raut, Narendra Nath Patra, Prerana Biswas, Nirupam Roy, Veselina Kalinova, Sergio Dzib, Dario Colombo, Vicente Villanueva, Sebasti\'an F. S\'anchez

TL;DR
This study models the 3D structure of NGC 551's stellar disk, revealing that traditional decomposition methods can be misleading and emphasizing the importance of detailed dynamical modeling for accurate structural parameter estimation.
Contribution
The paper introduces a self-consistent 3D dynamical model of NGC 551's stellar disk, highlighting limitations of Gaussian decomposition and proposing more reliable analysis techniques.
Findings
Artificial double Gaussian components can arise from line-of-sight effects.
Up-bending breaks in vertical cuts indicate two-component disks.
Traditional fitting underestimates scale length and flattening ratio.
Abstract
We self-consistently determine the 3D density distribution of NGC 551's stellar disk and study observational signatures of two-component stellar disks. Assuming baryonic disks are in hydrostatic equilibrium, we solved the Poisson-Boltzmann equation to estimate 3D density distribution. We used integral-field spectroscopic observations to estimate stellar velocity dispersion and built a 3D dynamical model using these density solutions and the observed rotation curve. We generated simulated surface brightness maps and compared them with observations to verify modeling consistency. The dynamical model was inclined to 90{\deg} to produce an edge-on surface density map, which we investigated by fitting different 2D functions and plotting vertical cuts in logarithmic scale. We estimated vertical stellar velocity dispersion using an iterative method, obtaining results consistent with the Disk…
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