Chemical Diagnostics to Unveil Environments Enriched by First Stars
arXiv:2402.18640 · doi:10.3847/2041-8213/ad46fa
Abstract
Unveiling the chemical fingerprints of the first (Pop III) stars is crucial for indirectly studying their properties and probing their massive nature. In particular, very massive Pop III stars explode as energetic Pair-Instability Supernovae (PISNe), allowing their chemical products to escape in the diffuse medium around galaxies, opening the possibility to observe their fingerprints in distant gas clouds. Recently, three z > 6.3 absorbers with abundances consistent with an enrichment from PISNe have been observed with JWST. In this Letter, we present novel chemical diagnostics to uncover environments mainly imprinted by PISNe. Furthermore, we revise the JWST low-resolution measurements by analyzing the publicly available high-resolution X-Shooter spectra for two of these systems. Our results reconcile the chemical abundances of these absorbers with those from literature, which are found to be consistent with an enrichment dominated (> 50% metals) by normal Pop II SNe. We show the power of our novel diagnostics in isolating environments uniquely enriched by PISNe from those mainly polluted by other Pop III and Pop II SNe. When the subsequent enrichment from Pop II SNe is included, however, we find that the abundances of PISN-dominated environments partially overlap with those predominantly enriched by other Pop III and Pop II SNe. We dub these areas confusion regions. Yet, the odd-even abundance ratios [Mg,Si/Al] are extremely effective in pinpointing PISN- dominated environments and allowed us to uncover, for the first time, an absorber consistent with a combined enrichment by a PISN and another Pop III SN for all the six measured elements.
16 pages, 10 figures, accepted for publication on ApJL
References in corpus (20)
- Primordial Star Formation under the Influence of Far Ultraviolet Radiation: 1540 Cosmological Halos and the Stellar Mass Distribution
- The Mass Spectrum of the First Stars
- Simulating cosmic metal enrichment by the first galaxies
- Cradles of the first stars: self-shielding, halo masses, and multiplicity
- XQR-30: the ultimate XSHOOTER quasar sample at the reionization epoch
- Constraining the PopIII IMF with high-z GRBs
- Zero-metallicity hypernova uncovered by an ultra metal-poor star in the Sculptor dwarf spheroidal galaxy
- Probing the existence of very massive first stars
- Ultra-faint dwarf galaxies: unveiling the minimum mass of the first stars
- The XQR-30 Metal Absorber Catalog: 778 Absorption Systems Spanning 2 < z < 6.5
- Tracing Pop III supernovae with extreme energies through the Sculptor dwarf spheroidal galaxy
- Dust depletion of of metals from local to distant galaxies II: Cosmic dust-to-metal ratio and dust composition
- Evidence of First Stars-enriched Gas in High-redshift Absorbers
- Metal enrichment and evolution in four z > 6.5 quasar sightlines observed with JWST/NIRSpec
- The energy distribution of the first supernovae
- PISN-explorer: hunting the descendants of very massive first stars
- Oxygen-enhanced extremely metal-poor DLAs: A signpost of the first stars?
- Understanding the origin of CEMP-no stars through ultra-faint dwarfs
- True Pair-instability Supernova Descendant: Implications for the First Stars' Mass Distribution
- Metal enrichment signatures of the first stars on high-z DLAs
Cited by in corpus (7)
- The R-Process Alliance: Fifth Data Release from the Search for R-Process-Enhanced Metal-poor Stars in the Galactic Halo with the GTC
- Gravitational waves from mergers of Population III binary black holes: roles played by two evolution channels
- Evidence of Pop~III stars' chemical signature in neutral gas at z~6. A study based on the E-XQR-30 spectroscopic sample
- Galaxy Formation and Symbiotic Evolution with the Inter-Galactic Medium in the Age of ELT-ANDES
- A Modified Initial Mass Function of the First Stars with Explodability Theory under Different Enrichment Scenarios
- An extremely metal-poor Lyman emitter candidate at revealed through absorption spectroscopy
- Ultraviolet photon production rates of the first stars: Impact on the He II 1640 Å emission line from primordial star clusters and the 21-cm signal from cosmic dawn