How robustly can we constrain the low-mass end of the stellar mass function? -- The limits of lensing models and stellar population assumptions in the Hubble Frontier Fields
arXiv:2011.13991 · doi:10.1093/mnras/staa3760
Abstract
We present new measurements of the very low-mass end of the galaxy stellar mass function (GSMF) at computed from a rest-frame ultraviolet selected sample of dropout galaxies. These galaxies lie behind the six Hubble Frontier Fields clusters and are all gravitationally magnified. Using deep Spitzer/IRAC and Hubble Space Telescope imaging, we derive stellar masses by fitting galaxy spectral energy distributions and explore the impact of different model assumptions and parameter degeneracies on the resulting GSMF. Our sample probes stellar masses down to and we find the GSMF to be best parametrized by a modified Schechter function which allows for a turnover at very low masses. Using a Monte-Carlo Markov Chain analysis of the GSMF, including accurate treatment of lensing uncertainties, we obtain a relatively steep low-mass end slope and a turnover at with a curvature of for our minimum assumption model with constant star-formation history (SFH) and low dust attenuation, . We find that the GSMF, in particular its very low-mass end, is significantly affected by the assumed functional form of the star formation history and the degeneracy between stellar mass and dust attenuation. For example, the low-mass end slope ranges from for an exponentially rising SFH to when allowing of up to 3.25. Future observations at longer wavelengths and higher angular resolution with the James Webb Space Telescope are required to break these degeneracies and to robustly constrain the stellar mass of galaxies on the extreme low-mass end of the GSMF.
Updated references
References in corpus (30)
- The NumPy array: a structure for efficient numerical computation
- UV Luminosity Functions at redshifts z~4 to z~10: 10000 Galaxies from HST Legacy Fields
- Cosmic Reionization and Early Star-Forming Galaxies: A Joint Analysis of New Constraints from Planck and Hubble Space Telescope
- The 2013 Release of Cloudy
- Modelling the nebular emission from primeval to present-day star-forming galaxies
- The mass evolution of the first galaxies: stellar mass functions and star formation rates at in the CANDELS GOODS-South field
- The galaxy stellar mass function at 3.5<z<7.5 in the CANDELS/UDS, GOODS-South, and HUDF fields
- Cluster Lenses
- Mass and magnification maps for the Hubble Space Telescope Frontier Fields clusters: implications for high redshift studies
- Lens models and magnification maps of the six Hubble Frontier Fields clusters
- CLASH-VLT: Insights on the mass substructures in the Frontier Fields Cluster MACS J0416.1-2403 through accurate strong lens modeling
- High-precision Photometric Redshifts from Spitzer/IRAC: Extreme [3.6]-[4.5] Colors Identify Galaxies in the Redshift Range z~6.6-6.9
- New Constraints on the Faint-end of the UV Luminosity Function at z~7-8 using the Gravitational Lensing of the Hubble Frontier Fields Cluster A2744
- Essential physics of early galaxy formation
- Hubble Frontier Fields : A High Precision Strong Lensing Analysis of Galaxy Cluster MACSJ0416.1-2403 using ~200 Multiple Images
- The GREATS H+[OIII] Luminosity Function and Galaxy Properties at : Walking the Way of JWST
- The Stellar Mass Density at z~6 from Spitzer Imaging of i-drop Galaxies
- Frontier Fields: High-Redshift Predictions and Early Results
- Lyman-break galaxies at z~5 -I. First significant stellar mass assembly in galaxies that are not simply z~3 LBGs at higher redshift
- The sizes of lensed galaxies from the Hubble Frontier Fields Abell 2744 data
- Constraints on Physical Properties of z~6 Galaxies Using Cosmological Hydrodynamic Simulations
- Dust Attenuation in High Redshift Galaxies -- 'Diamonds in the Sky'
- The Absence of [CII] 158m Emission in Spectroscopically-Confirmed Galaxies at
- Hubble Space Telescope Grism Spectroscopy of Extreme Starbursts Across Cosmic Time: The Role of Dwarf Galaxies in the Star Formation History of the Universe
- Ultra-deep Ks-band Imaging of the Hubble Frontier Fields
- Accounting for Cosmic Variance in Studies of Gravitationally-Lensed High-Redshift Galaxies in the Hubble Frontier Field Clusters
- Simulating JWST deep extragalactic imaging surveys and physical parameter recovery
- hybrid-Lenstool: A self-consistent algorithm to model galaxy clusters with strong- and weak-lensing simultaneously
- Recovering the properties of high redshift galaxies with different JWST broad-band filters
- Maximising the power of deep extragalactic imaging surveys with the James Webb Space Telescope
Cited by in corpus (30)
- Revealing Galaxy Candidates out to with JWST Observations of the Lensing Cluster SMACS0723
- Galaxy Formation and Reionization: Key Unknowns and Expected Breakthroughs by the James Webb Space Telescope
- Galaxy Stellar Mass Functions from z~10 to z~6 using the Deepest Spitzer/IRAC Data: No Significant Evolution in the Stellar-to-Halo Mass Ratio of Galaxies in the First Gyr of Cosmic Time
- Evolution of the UV LF from z~15 to z~8 Using New JWST NIRCam Medium-Band Observations over the HUDF/XDF
- UV Luminosity Density Results at z>8 from the First JWST/NIRCam Fields: Limitations of Early Data Sets and the Need for Spectroscopy
- The ASTRID Simulation: Galaxy Formation and Reionization
- z~2-9 Galaxies Magnified by the Hubble Frontier Field Clusters II: Luminosity Functions and Constraints on a Faint-End Turnover
- UNCOVERing the extended strong lensing structures of Abell 2744 with the deepest JWST imaging
- Galaxy Build-up in the first 1.5 Gyr of Cosmic History: Insights from the Stellar Mass Function at from JWST NIRCam Observations
- JWST UNCOVER: Discovery of Galaxy Candidates Behind the Lensing Cluster Abell 2744
- Constraining the physical properties of the first lensed galaxy candidates with JWST
- Unscrambling the lensed galaxies in JWST images behind SMACS0723
- EPOCHS IV: SED Modelling Assumptions and their impact on the Stellar Mass Function at 6.5 < z < 13.5 using PEARLS and public JWST observations
- Quantifying the Effects of Known Unknowns on Inferred High-redshift Galaxy Properties: Burstiness, the IMF, and Nebular Physics
- The UNCOVER Survey: A First-look HST+JWST Catalog of Galaxy Redshifts and Stellar Population Properties Spanning
- Galaxy Mergers in the Epoch of Reionization I: A JWST Study of Pair Fractions, Merger Rates, and Stellar Mass Accretion Rates at
- Dust attenuation law in JWST galaxies at z = 7-8
- The evolution of the SFR and Sigma-SFR of galaxies in cosmic morning (4 < z < 10)
- HST strong-lensing model for the first JWST galaxy cluster SMACS J0723.3-7327
- Implications of a Temperature Dependent IMF II: An Updated View of the Star-Forming Main Sequence
- Beyond the Ultra-deep Frontier Fields And Legacy Observations (BUFFALO): a high-resolution strong + weak-lensing view of Abell 370
- A double-peaked Lyman- emitter with a strong blue peak multiply imaged by the galaxy cluster RXC J0018.5+1626
- The effects of binary stars on galaxies and metal-enriched gas during reionization
- Evolution of the Lyman-α emitting fraction and UV properties of lensed star-forming galaxies between 2.9 < z < 6.7
- Behind the Spotlight: A systematic assessment of outshining using NIRCam medium-bands in the JADES Origins Field
- The environments and hosts of metal absorption at z>5
- Galaxy Mergers in the Epoch of Reionization II: Major Merger-Triggered Star Formation and AGN Activities at 4.5-8.5
- relensing: Reconstructing the mass profile of galaxy clusters from gravitational lensing
- Measurement of the evolving galaxy luminosity and mass function using clustering-based redshift inference
- Euclid preparation: TBD. Cosmic Dawn Survey: evolution of the galaxy stellar mass function across 0.2<z<6.5 measured over 10 square degrees