Linking high-z and low-z: Are We Observing the Progenitors of the Milky Way with JWST?
arXiv:2407.06255 · doi:10.3847/2041-8213/ad833d
Abstract
The recent JWST observation of the Firefly Sparkle at offers a unique opportunity to link the high- and the low- Universe. Indeed, the claim of it being a Milky Way (MW) type of assembly at the cosmic dawn opens the possibility of interpreting the observation with locally calibrated galaxy-formation models. Here, we use the MW-evolution model NEFERTITI to perform forward modeling of our Galaxy's progenitors at high-. We build a set of mock spectra for the MW building blocks to make predictions for JWST and to interpret the Firefly Sparkle observation. First, we find that the most massive MW progenitor becomes detectable in a deep survey like JADES from , meaning that we could have already observed MW-analogs that still need interpretation. Second, we provide predictions for the number of detectable MW progenitors in lensed surveys like CANUCS, and interpret the Firefly Sparkle as a group of MW building blocks. Both the number of detections and the observed NIRCam photometry are consistent with our predictions. By identifying the MW progenitors whose mock photometry best fits the data, we find bursty and extended star-formation histories, lasting ~Myr, and estimate their properties: , , and . Uncovering the properties of MW-analogs at cosmic dawn by combining JWST observations and locally-constrained models, will allow us to understand our Galaxy's formation, linking the high- and low- perspectives.
11 pages, 6 figures, 1 table. Accepted for publication in ApJ
References in corpus (22)
- Gaia Data Release 3: Summary of the content and survey properties
- The GALAH+ Survey: Third Data Release
- A Comprehensive Study on Galaxies at z~9-16 Found in the Early JWST Data: UV Luminosity Functions and Cosmic Star-Formation History at the Pre-Reionization Epoch
- CEERS Key Paper I: An Early Look into the First 500 Myr of Galaxy Formation with JWST
- The GLASS James Webb Space Telescope Early Release Science Program. I. Survey Design and Release Plans
- Spectroscopic confirmation of two luminous galaxies at
- Non-parametric Star Formation History Reconstruction with Gaussian Processes I: Counting Major Episodes of Star Formation
- Ultra faint dwarfs: probing early cosmic star formation
- JWST/NIRCam Probes Young Star Clusters in the Reionization Era Sunrise Arc
- Stochastic star formation in early galaxies: JWST implications
- Limits on Pop III star formation with the most iron-poor stars
- Star formation histories of UV-luminous galaxies at : implications for stellar mass assembly at early cosmic times
- The Near Infrared Imager and Slitless Spectrograph for the James Webb Space Telescope -- II. Wide Field Slitless Spectroscopy
- The nature of an ultra-faint galaxy in the cosmic Dark Ages seen with JWST
- Public Release of A-SLOTH: Ancient Stars and Local Observables by Tracing Halos
- Ultra-faint dwarf galaxies: unveiling the minimum mass of the first stars
- Quiescent low-mass galaxies observed by JWST in the Epoch of Reionization
- Outshining in the Spatially Resolved Analysis of a Strongly-Lensed Galaxy at z=6.072 with JWST NIRCam
- HOMERUN a new approach to photoionization modelling. I -- reproducing observed emission lines with percent accuracy and obtaining accurate physical properties of the ionized gas
- The energy distribution of the first supernovae
- True Pair-instability Supernova Descendant: Implications for the First Stars' Mass Distribution
- On the dearth of C-enhanced metal-poor stars in the Galactic bulge