Galaxy Protoclusters as Drivers of Cosmic Reionization: II. Te-Based Metallicities of Lyman-α Emitters
C. Moya-Sierralta, C. L. Martin, L. F. Barrientos, L. Infante, J. González-López, W. Hu, A. L. Faisst, Y. Harikane, A. M. Koekemoer, S. Malhotra, M. Ouchi, Z. Peng, J. Rhoads, J. Wang, J. R. Weaver, I. Wold, J. Yang, Z. Zheng
Abstract
Context. Protoclusters at reionization are thought to host a significant fraction of the cosmic star formation rate density, making them crucial for the timing and topology of reionization. The gas-phase metallicity, a key tracer of galaxy evolutionary stage, can now be measured directly in the early Universe with JWST. Aims. We measure the gas-phase metallicity of Lyman-α emitters (LAEs) in the LAGER-z7OD1 protocluster at z≈6.93 via the direct (Te-based) method using the [O III]λ4363 auroral line, and combine it with stellar masses to constrain the mass-metallicity relation (MZR) in dense environments. Methods. We use JWST/NIRSpec MSA G395H spectroscopy, derive metallicities with self-consistent analytic prescriptions, and propagate the dust-extinction uncertainty into an asymmetric error budget via Monte Carlo simulations based on the observed Balmer decrements. Stellar masses come from BEAGLE SED fitting of JWST/NIRCam and UltraVISTA photometry. Results. We obtain five secure [O III]λ4363 detections and one upper limit, with 12+log(O/H) ≈ 7.2-8.0. The weighted spectral stack yields 12+log(O/H) = 7.76+0.06-0.05, ~0.26 dex higher than stacks of LAEs at similar redshifts from JWST surveys. However, the MZR fit gives a slope γ = 0.232 +/- 0.214 and normalization Z0 = 7.888 +/- 0.199, placing our sources below the established MZR of normal galaxies and recent protocluster baselines at z5-7. Conclusions. The higher metallicity relative to general LAEs suggests accelerated assembly driven by the overdensity, while the offset below the MZR points to a complex interplay between mass build-up and gas accretion. Since we target actively star-forming LAEs, we are likely capturing a phase of pristine gas inflow from the intergalactic medium that fuels star formation but dilutes the interstellar media of these protocluster members.
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