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February 5, 2026SHILAP Revista de lepidopterología8 citationsOpen Access

Evolutionary Tracks and Spectral Properties of Quasi-stars and Their Correlation with Little Red Dots

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ASAndrew D. SantarelliEFEbraheem FaragEBEarl P. Bellinger

Key Points

  • The study aims to model quasi-stars and explore their spectral properties in relation to Little Red Dots.
  • Developed evolutionary models of quasi-stars using the MESA-QUEST framework.
  • Computed a range of models for different black hole masses.
  • Analyzed luminosities, temperatures, and surface gravities of quasi-stars.
  • Compared model spectra to observations of Little Red Dots.
  • Models indicate quasi-stars follow a Hayashi track during their late stage.
  • Short lifetimes of quasi-stars support the theory that detected supermassive black holes originated from them.
  • Synthetic spectra of quasi-star models align well with observed Little Red Dots.

Abstract

Abstract JWST has revealed a population of red, compact, high-redshift ( z ∼ 3–10) objects referred to as “Little Red Dots” (LRDs). These objects exhibit unusual spectral features reminiscent of stellar spectra with blackbody-like spectral energy distributions, large hydrogen Balmer breaks, Balmer line absorption, and classical stellar absorption features such as calcium H&K and the calcium triplet. Following the recent suggestion that these may be actively accreting direct-collapse black holes in the process of assembly, i.e., quasi-stars, we present evolutionary models of quasi-stars using our recently released, publicly available MESA-QUEST modeling framework. We compute a grid of models spanning a range of black hole masses and predict the luminosities, temperatures, surface gravities, and lifetimes of these objects. We find that these models lie along a Hayashi track once they hit their “late stage,” which constitutes the majority of their lives (∼20 Myr). We present scaling relations for estimating the mass of a quasi-star as a function of the bolometric luminosity, as well as the bolometric luminosity as a function of the effective temperature for the Hayashi track. The short lifetimes in tandem with the observed number density of LRDs imply the possibility that every supermassive black hole detected at these epochs was once a quasi-star. We compare synthetic spectra of our quasi-star models to observations of LRDs, and show that these models are broadly capable of reproducing the continuum spectra of observed LRDs. These results indicate that quasi-stars are promising candidates for the origin of supermassive black holes via direct collapse in the early Universe.

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Cite This Study

Santarelli et al. (2026) studied this question.

synapsesocial.com/papers/6984349af1d9ada3c1fb2d9chttps://doi.org/10.3847/2041-8213/ae3713
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