Implications of a Temperature-dependent Initial Mass Function. I. Photometric Template Fitting

  • Sneppen A
  • Steinhardt C
  • Hensley H
  • et al.
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Abstract

A universal stellar initial mass function (IMF) should not be expected from theoretical models of star formation, but little conclusive observational evidence for a variable IMF has been uncovered. In this paper, a parameterization of the IMF is introduced into photometric template fitting of the COSMOS2015 catalog. The resulting best-fit templates suggest systematic variations in the IMF, with most galaxies exhibiting top-heavier stellar populations than in the Milky Way. At fixed redshift, only a small range of IMFs are found, with the typical IMF becoming progressively top-heavier with increasing redshift. Additionally, subpopulations of ULIRGs, quiescent and star-forming galaxies are compared with predictions of stellar population feedback and show clear qualitative similarities to the evolution of dust temperatures.

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Sneppen, A., Steinhardt, C. L., Hensley, H., Jermyn, A. S., Mostafa, B., & Weaver, J. R. (2022). Implications of a Temperature-dependent Initial Mass Function. I. Photometric Template Fitting. The Astrophysical Journal, 931(1), 57. https://doi.org/10.3847/1538-4357/ac695e

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