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April 24, 2026SHILAP Revista de lepidopterología2 citationsOpen Access

The Impact of Galaxy Overdensities and Ionized Bubbles on Ly α Emission at z  ∼ 7.0–8.5

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ZCZuyi ChenDSDaniel P. StarkCMCharlotte Mason

Key Points

  • The research aims to investigate the connection between galaxy overdensities and Ly α emission during the reionization epoch.
  • Analyzed Ly α emission in 292 galaxies at redshifts 7.0 to 8.5 using JWST.
  • Characterized galaxy environments and identified significant galaxy overdensities using NIRCam and NIRSpec data.
  • Measured equivalent widths of Ly α emission in the detected galaxies.
  • Detected Ly α emission in 36 galaxies, including 9 new detections with high equivalent widths.
  • Identified 13 significant galaxy overdensities with strong Ly α emitters predominantly located within them.
  • Observed a large ionized region in the Extended Groth Strip that challenges standard reionization models.

Abstract

Abstract Ly α spectroscopy with JWST is opening a new window on the sizes of ionized bubbles through the reionization epoch. Theoretical expectations suggest typical bubble radii should be 0.6–1.5 pMpc at z ≃ 7, assuming neutral hydrogen fractions of the intergalactic medium in the range x ¯ HI = 0.5–0.7. Here, we investigate this picture using JWST to characterize the environment and Ly α emission of 292 galaxies at 7.0 20 0 − 78 + 50 Å and 28 4 − 75 + 56 Å). We identify 13 significant (4–11×) galaxy overdensities using redshifts from NIRCam grism and NIRSpec. Strong Ly α emitters are almost uniformly found in the overdensities, with nearly all located between the center and back of the structures. The overdensities that host the strong Ly α emitters span typical line-of-sight distances ( d z ∼ 0.14) and angular scales (∼8′) that are comparable to the predicted bubble sizes at z ≃ 7. We discuss evidence that the Extended Groth Strip is mostly ionized along a 24 pMpc sight line at z ≃ 7.0–7.6, based on the presence of three overdense structures and 10 Ly α emitters in this volume, and find such a large ionized region would pose tension with standard reionization models.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/69eb07a4553a5433e34b3324https://doi.org/10.3847/1538-4357/ae4220
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