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May 2, 20260 citations

Discovery of low-redshift analogues to little red dots in DESI: A possible later evolutionary stage of compact LRDs

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WDWeiyu DingXKXu KongWGWei-Jian Guo

Key Points

  • Identify and characterize low-redshift analogues of little red dots to understand their properties and evolution.
  • Identified five candidates at redshifts z = 0.2-0.4 using DESI.
  • Evaluated spectral energy distributions and broad Balmer emission lines.
  • Compared findings with high-redshift counterparts using the BPT diagram.
  • Low-redshift sample shows differing positions on the BPT diagram compared to high-redshift LRDs.
  • Stellar masses of candidates are significantly higher, indicating substantial host galaxy contributions.
  • Findings suggest these candidates may represent later evolutionary stages rather than direct analogues.

Abstract

The James Webb Space Telescope (JWST) has recently discovered a population of compact red sources at z ≥ 4 known as little red dots (LRDs). They are characterized by their V-shaped continuum spectra and prominent broad Balmer emission lines. As their underlying physical nature remains debated, and direct study at high redshift is challenging, we seek to identify and characterize LRD analogues in the low-redshift universe to constrain their properties and potential evolutionary pathways. We identified five candidates at z = 0.2-0.4 from the Dark Energy Spectroscopic Instrument (DESI) that exhibit spectral energy distributions (SEDs) and broad Balmer emission lines closely resembling their high-redshift counterparts. However, we find significant differences: our low-redshift sample occupies a different region on the Baldwin, Phillips & Terlevich (BPT) diagram, and their stellar masses are significantly higher, suggesting a more substantial host galaxy contribution. These sources are not necessarily direct local analogues of high-redshift LRDs, but may represent later evolutionary stages of compact rapidly accreting systems or systems with related observational properties arising under different physical conditions. This sample provides a valuable laboratory for detailed follow-up studies to elucidate the nature of LRD-like phenomena.

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Cite This Study

Ding et al. (2026) studied this question.

synapsesocial.com/papers/69f5951171405d493a00000ahttps://doi.org/10.1051/0004-6361/202557889/pdf
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