The core of the problem: Physical limits of the core-Sérsic model

Fuente: arXiv
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Main Author: Baes, Maarten
Format: Preprint
Published: 2026
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author Baes, Maarten
author_facet Baes, Maarten
contents The core-Sérsic model is the standard tool for describing partially depleted stellar cores in massive early-type galaxies, yet its physical admissibility has rarely been examined. Using numerical deprojections, we show that many formally allowed parameter combinations cannot represent realistic stellar systems: sharp transitions between the inner power-law core and the outer Sérsic profile (large $α$) always generate non-monotonic intrinsic density profiles. We identify, for each set of structural parameters $(γ, m, R_{\text{e}}/R_{\text{b}})$, a critical transition parameter, $α_{\text{crit}}$, above which monotonicity is violated. This threshold systematically depends on the core slope and Sérsic index, implying that a fraction of the commonly used parameter space, including the widely adopted sharp-transition limit $α\rightarrow\infty$, is physically ruled out. These constraints have important consequences for measuring core sizes and mass deficits in massive ellipticals, for constructing dynamical models, and for comparing observations with simulations of supermassive black hole binary evolution.
format Preprint
id arxiv_https___arxiv_org_abs_2604_20344
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle The core of the problem: Physical limits of the core-Sérsic model
Baes, Maarten
Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
The core-Sérsic model is the standard tool for describing partially depleted stellar cores in massive early-type galaxies, yet its physical admissibility has rarely been examined. Using numerical deprojections, we show that many formally allowed parameter combinations cannot represent realistic stellar systems: sharp transitions between the inner power-law core and the outer Sérsic profile (large $α$) always generate non-monotonic intrinsic density profiles. We identify, for each set of structural parameters $(γ, m, R_{\text{e}}/R_{\text{b}})$, a critical transition parameter, $α_{\text{crit}}$, above which monotonicity is violated. This threshold systematically depends on the core slope and Sérsic index, implying that a fraction of the commonly used parameter space, including the widely adopted sharp-transition limit $α\rightarrow\infty$, is physically ruled out. These constraints have important consequences for measuring core sizes and mass deficits in massive ellipticals, for constructing dynamical models, and for comparing observations with simulations of supermassive black hole binary evolution.
title The core of the problem: Physical limits of the core-Sérsic model
topic Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2604.20344