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Stellar populations of massive early-type galaxies observed by MUSE

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arxiv 2402.06628 v1 pith:RGBECHLC submitted 2024-02-09 astro-ph.GA

Stellar populations of massive early-type galaxies observed by MUSE

classification astro-ph.GA
keywords galaxiesgradientsstellarcomparedetgsmassivepopulationscentres
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

Stellar population studies of massive early-type galaxies (ETGs) suggest that the stellar initial mass function may not be universal. In particular, the centres of ETGs seem to contain an excess of low-mass dwarf stars compared to our own Galaxy. Through high resolution MUSE IFU data, we carry out a detailed study of the stellar populations of eight massive ETGs. We use full spectrum fitting to determine ages, element abundances, and IMF slopes for spatially binned spectra. We measure flat gradients in age and [Mg/Fe] ratio, as well as negative gradients in metallicity and [Na/Fe]. We detect IMF gradients in some galaxies, with the centres hosting bottom-heavy IMFs and mass excess factors between 1.5-2.5 compared to a Kroupa IMF. The IMF slope below 0.5~M$_\odot$ varies for our galaxy sample between 1-2.8, with negative radial gradients, while the IMF slope between 0.5-1~M$_\odot$ has a steep value of $\sim$3 with mildly positive gradients for most galaxies. For M87, we find excellent agreement with the dynamical M/L as a function of radius. For the other galaxies, we find systematically higher M/L from stellar populations compared to orbit-based dynamical analysis of the same data. This discrepancy increases with NaI strength, suggesting a combination of calibration issues of this line and correlated uncertainties.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. SNELLS-HD I: a first look at the stellar properties of the massive strong-lens galaxy SNL-1 with 50 pc resolution

    astro-ph.GA 2025-09 conditional novelty 6.0

    At 50 pc resolution the stellar mass-to-light ratio from dynamics is Kroupa-like (about 2.3) while spectral fitting is Salpeter-like (about 3.5), so the IMF tension persists over the same field of view.