Flashlights: Prospects for constraining the Initial Mass Function around cosmic noon with caustic-crossing events
arXiv:2503.21706 · doi:10.1051/0004-6361/202555023
Abstract
The Flashlights program with the Hubble Space Telescope imaged the six Hubble Frontier Fields galaxy clusters in two epochs and detected twenty transients. These are primarily expected to be caustic-crossing events (CCEs) where bright stars in distant lensed galaxies, typically at redshift --3, get temporarily magnified close to cluster caustics. Since CCEs are generally biased toward more massive and luminous stars, they offer a unique route for probing the high end of the stellar mass function. We take advantage of the Flashlights event statistics to place preliminary constraints on the stellar initial mass function (IMF) around cosmic noon. The photometry (along with spectral information) of lensed arcs is used to infer their various stellar properties, and stellar synthesis models are used to evolve a recent stellar population in them. We estimate the microlens surface density near each arc and, together with existing lens models and simple formalism for CCEs, calculate the expected rate for a given IMF. We find that, on average, a Salpeter-like IMF () underpredicts the number of observed CCEs by a factor of , and a top-heavy IMF () overpredicts by a factor of , suggesting that the average IMF slope may lie somewhere in between. However, given the large uncertainties associated with estimating the stellar populations, these results are strongly model-dependent. Nevertheless, we introduce a useful framework for constraining the IMF using CCEs. Observations with JWST are already yielding many more CCEs and will soon enable more stringent constraints on the IMF at a range of redshifts.
14 pages. 6 figures. Published in A&A
References in corpus (61)
- Array Programming with NumPy
- Cosmic Star Formation History
- Binary companions of evolved stars in APOGEE DR14: Search method and catalog of ~5,000 companions
- MESA Isochrones and Stellar Tracks (MIST). I: Solar-Scaled Models
- Modeling the Panchromatic Spectral Energy Distributions of Galaxies
- Binary Population and Spectral Synthesis Version 2.1: construction, observational verification and new results
- Inferring the star-formation histories of massive quiescent galaxies with BAGPIPES: Evidence for multiple quenching mechanisms
- The Frontier Fields: Survey Design
- A population of red candidate massive galaxies ~600 Myr after the Big Bang
- Deriving Physical Properties from Broadband Photometry with Prospector: Description of the Model and a Demonstration of its Accuracy Using 129 Galaxies in the Local Universe
- The Evolution of Galaxy Structure over Cosmic Time
- The evolution of the galaxy UV luminosity function at redshifts z ~ 8-15 from deep JWST and ground-based near-infrared imaging
- The Mass Distribution of SDSS J1004+4112 Revisited
- Rapid Reionization by the Oligarchs: The Case for Massive, UV-Bright, Star-Forming Galaxies with High Escape Fractions
- Efficient Formation of Massive Galaxies at Cosmic Dawn by Feedback-Free Starbursts
- Hubble Space Telescope Combined Strong and Weak Lensing Analysis of the CLASH Sample: Mass and Magnification Models and Systematic Uncertainties
- On the mass function of star clusters
- Understanding caustic crossings in giant arcs: characteristic scales, event rates, and constraints on compact dark matter
- Galaxy Size Evolution at High Redshift and Surface Brightness Selection Effects: Constraints from the Hubble Ultra Deep Field
- COSMOS-DASH: The Evolution of the Galaxy Size-Mass Relation Since z~3 from new Wide Field WFC3 Imaging Combined with CANDELS/3DHST
- The Art of Measuring Physical Parameters in Galaxies: A Critical Assessment of Spectral Energy Distribution Fitting Techniques
- Interstellar Extinction Law toward the Galactic Center II: V, J, H, and Ks Bands
- Most of the photons that reionized the Universe came from dwarf galaxies
- CLASH-VLT: A Highly Precise Strong Lensing Model of the Galaxy Cluster RXC J2248.7-4431 (Abell S1063) and Prospects for Cosmography
- An Atlas of MUSE Observations towards Twelve Massive Lensing Clusters
- The effect of stellar evolution uncertainties on the rest-frame ultraviolet stellar lines of CIV and HeII in high-redshift Lyman-break galaxies
- A Highly Magnified Star at Redshift 6.2
- Intracluster Light at the Frontier II: The Frontier Fields Clusters
- Dark matter under the microscope: Constraining compact dark matter with caustic crossing events
- New Insights into the Evolution of Massive Stars and Their Effects on Our Understanding of Early Galaxies
- The sizes of lensed galaxies from the Hubble Frontier Fields Abell 2744 data
- EPOCHS VI: The Size and Shape Evolution of Galaxies since z ~ 8 with JWST Observations
- On the observability of individual Population III stars and their stellar-mass black hole accretion disks through cluster caustic transits
- Einstein rings modulated by wavelike dark matter from anomalies in gravitationally lensed images
- The Sizes of Candidate Galaxies: confirmation of the bright CANDELS sample and relation with luminosity and mass
- Lens Models Under the Microscope: Comparison of Hubble Frontier Field Cluster Magnification Maps
- Microlensing of Extremely Magnified Stars near Caustics of Galaxy Clusters
- JWST Imaging of Earendel, the Extremely Magnified Star at Redshift
- The ARAUCARIA Project: VLT-FORS spectroscopy of blue supergiants in NGC 3109 - Classifications, first abundances and kinematics
- Searching for Highly Magnified Stars at Cosmological Distances: Discovery of a Redshift 0.94 Blue Supergiant in Archival Images of the Galaxy Cluster MACS J0416.1-2403
- The Magellan Evolution of Galaxies Spectroscopic and Ultraviolet Reference Atlas (MEGaSaURA) I: The Sample and the Spectra
- The Universe at extreme magnification
- Highly Magnified Stars in Lensing Clusters: New Evidence in a Galaxy Lensed by MACS J0416.1-2403
- Two lensed star candidates at behind the galaxy cluster MACS J0647.7+7015
- JWST's PEARLS: a new lens model for ACT-CL J01024915, "EL Gordo'', and the first red supergiant star at cosmological distances discovered by JWST
- Qualitative aspects of quasar microlensing with two mass components: magnification patterns and probability distributions
- SPISEA: A Python-Based Simple Stellar Population Synthesis Code for Star Clusters
- The spectroscopic Hertzsprung-Russell diagram of hot massive stars in the SMC
- Probing Dark Matter Subhalos in Galaxy Clusters Using Highly Magnified Stars
- Multiple Images and Flux Ratio Anomaly of Fuzzy Gravitational Lenses
- JWST UNCOVER: The Overabundance of Ultraviolet-luminous Galaxies at
- Resolved Star Formation on Sub-galactic Scales in a Merger at z=1.7
- Systematic vs. Statistical Uncertainties in Masses and Magnifications of the Hubble Frontier Fields
- An Efficient Method for Simulating Light Curves of Cosmological Microlensing and Caustic Crossing Events
- Flashlights: An Off-Caustic Lensed Star at Redshift = 1.26 in Abell 370
- Imaging dark matter at the smallest scales with lensed stars
- Statistics of magnification for extremely lensed high redshift stars
- Implications of a Temperature Dependent IMF III: Mass Growth and Quiescence
- Lessons from the first multiply imaged supernova II: A parametric strong-lensing model for the galaxy cluster MACS J1149.5+2223
- The Sunburst Arc with JWST: II. Observations of an Eta Carinae Analog at
- Microlensing at Cosmological Distances: Event Rate Predictions in the Warhol Arc of MACS 0416