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SAPPHIRES: Extremely Metal-Poor Galaxy Candidates with $12+{\rm log(O/H)}<7.0$ at $z\sim5-7$ from Deep JWST/NIRCam Grism Observations

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arxiv 2505.03873 v1 pith:BUOYMKD6 submitted 2025-05-06 astro-ph.GA

classification astro-ph.GA
keywords galaxiesjwstextremelysapphirescandidatesdatadeepmetal-poor
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Population III stars, the hypothetical first generation metal-free stars, have yet to be discovered. Even after three years of successful JWST operations, studies have shown that most galaxies identified to date at $z > 5$ exhibit a metallicity floor of $Z\gtrsim2\%\,Z_{\odot}$, possibly due to unknown selection biases toward bright galaxies or rapid metal enrichment. To address this question, we search for galaxies with low R3$=$[OIII]$\,\lambda$5008/H$\beta$ ratios as part of the JWST Cycle-3 large treasury program, the Slitless Areal Pure-Parallel HIgh-Redshift Emission Survey (SAPPHIRES). Using deep NIRCam Wide-Field Slitless Spectrscopy (WFSS) data, we report the discovery of seven extremely metal-poor galaxy candidates in the SAPPHIRES Early Data Release field, with estimated $12+{\rm log(O/H)}<7.0$ at $z\sim5-7$, including two sources with $Z<1\%\,Z_{\odot}$, significantly breaking the metallicity floor observed both locally and at high redshift. These candidates appear extremely faint ($\sim28-30\,$ F200W AB mag) and low-mass (${\rm log}(M_{*}/M_{\odot})\sim6.8-7.8$), as expected from the mass-metallicity relation. They also exhibit very blue UV slopes ($-2.6\lesssim\beta\lesssim-2.0$), likely due to low dust content $A_{V}\lesssim0.2\,{\rm mag}$ or young stellar ages $\sim5-20\,{\rm Myr}$. Compared to galaxies at similar redshift, they appear exceptionally bursty in their star formation activity. Our results highlight the power of NIRCam/WFSS in identifying extremely metal-poor galaxies, from just a single pointing, with more data to come in SAPPHIRES. This underscores the potential of pure-parallel programs towards achieving JWST's primary science goal: discovering the first pristine stars and galaxies. Deep JWST/NIRSpec follow-up observations will also be essential to confirm their nature and perform detailed chemical abundance analyses.

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Forward citations

Cited by 8 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. VENUS: an ultra-faint galaxy hosting the metal-poor type II supernova at $z=5.13$ Witnessing the initial metal enrichment with extremely frequent core-collapse supernovae?

    astro-ph.GA 2026-07 conditional novelty 7.0 of 10

    The z=5.13 supernova SN Eos exploded in an ultra-faint, very metal-poor dwarf galaxy, suggesting core-collapse supernovae were much more frequent in early low-metallicity environments.

  2. Electron temperature relations and the direct N, O, Ne, S and Ar abundances of 49959 star-forming galaxies in DESI Data Release 2

    astro-ph.GA 2026-01 conditional novelty 7.0 of 10

    Direct electron-temperature measurements for about 50,000 star-forming galaxies from DESI DR2 yield the largest direct-method abundance catalogue ever built, two record-low-metallicity galaxies, and new trends in N/O,...

  3. Pristine Massive Star Formation Caught at the Break of Cosmic Dawn

    astro-ph.CO 2025-07 conditional novelty 7.0 of 10

    The lensed galaxy AMORE6 at z=5.725 shows H-beta but no [OIII], giving an oxygen abundance upper limit of 0.19% solar, the most metal-poor galaxy known.

  4. A Type Ia Supernova Candidate at $z\sim4.3$: A Transient Interloper in the Search for $z\sim14$ Galaxies

    astro-ph.HE 2026-07 conditional novelty 6.0 of 10

    A JWST candidate z~14 galaxy is reclassified as a Type Ia supernova at z~4.3, implying SN Ia minimum delay times shorter than 1 Gyr.

  5. Cosmological simulations of the high-redshift galaxy population adopting a variable stellar initial mass function

    astro-ph.GA 2026-07 conditional novelty 6.0 of 10

    A density-dependent top-heavy stellar IMF brightens z=10-15 galaxies by ~1-1.3 mag in the UV, easing the JWST bright-galaxy tension; extra dust from the massive stars offsets much of the boost by z=5.

  6. Gas-Phase Metallicity and Nitrogen Abundances in Low-Mass Galaxies Down to $M_\star\simeq10^{5.7}\,M_\odot$ at $z\simeq4.5$--$10.1$ from JWST Lensing Cluster Surveys

    astro-ph.GA 2026-07 conditional novelty 6.0 of 10

    JWST lensing-cluster spectra push the z~6 mass–metallicity relation to M*~10^6.6 Msun and reveal a UV-vs-optical nitrogen discrepancy suggesting local nitrogen enhancement, possibly from Wolf-Rayet stars.

  7. How Massive Can a Population III Starburst Be? Simulating the First Galaxies with High Lyman-Werner Background

    astro-ph.GA 2026-03 conditional novelty 6.0 of 10

    Strong Lyman-Werner radiation can delay star formation in 10^8-solar-mass halos, enabling Population III starbursts of up to ~10^6 solar masses before internal metal enrichment ends them.

  8. JADES-GS-z14-1: A Compact, Faint Galaxy at $z\approx14$ with Weak Metal Lines from Extremely Deep JWST MIRI, NIRCam, and NIRSpec Observations

    astro-ph.GA 2025-07 conditional novelty 6.0 of 10

    JADES-GS-z14-1 is a compact, faint z≈14 galaxy with weak [O III] and Hβ emission, pointing to low metallicity and possibly high ionizing photon escape.

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