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H I Absorbers as Beacons of Hidden Structure at z∼3z \sim 3: Multi-Component, Metal-Rich Absorption System near a Protocluster

Published 3 Sep 2026 in astro-ph.GA and astro-ph.CO | (2609.04349v1)

Abstract: H I gas traces the large-scale structure and provides the primary fuel for star formation. High-zz protoclusters are ideal laboratories to study how H I gas is accreted and consumed during the formation of the most massive structures in the Universe. However, much remains unknown about the distribution and physical state of their H I gas. We examine a rare configuration in which a protocluster candidate is located in front of a quasar at z=3.09z=3.09. Our spectroscopic campaign confirms a protocluster at z=3.079z=3.079: however, no corresponding strong H I absorption is found in the background quasar spectrum. Instead, we serendipitously discover a prominent H I absorption feature at z∼3.01z\sim 3.01, offset by ∼60\sim 60 cMpc from the centre of the protocluster. Spanning an exceptionally broad velocity range of ∼2000\sim 2000 km s<sup>−1<sup>{-1} (∼40\sim 40 cMpc), this absorption is decoupled from the confirmed member galaxies. Detailed kinematic modelling reveals this absorption comprises five distinct components rather than a single cloud. Moreover, one of these components exhibits a super-solar metallicity ([O/H]=+1.19<sup>+0.91−0.78[\mathrm{O/H}] = +1.19<sup>{+0.91}_{-0.78}). We propose two physical scenarios for this unique system: (1) an additional, hidden massive protocluster along the line of sight, and/or (2) metal-rich outflows and metal-poor inflows driven by a single massive galaxy. The discovery highlights that while protoclusters are not universally associated with strong H I absorption, targeting the strong H I absorbers may serve as a beacon for uncovering massive, metal-rich protoclusters or complex gas kinematics in the early Universe.

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