Improving Galaxy Property Estimates with JWST/NIRCam Medium-Band Photometry
arXiv:2102.04469 · doi:10.3847/1538-4357/abe45b
Abstract
The past decade has seen impressive progress in the detection of galaxies with the Hubble Space Telescope, however little is known about their properties. The James Webb Space Telescope will revolutionise the high- field by providing NIR (i.e., rest-frame optical) data of unprecedented depth and spatial resolution. Measuring galaxy quantities such as resolved stellar ages or gas metallicity gradients traditionally requires spectroscopy, as broad-band imaging filters are generally too coarse to fully isolate diagnostics such as the 4000 Å (rest-frame) break, continuum emission from aged stars, and key emission lines (e.g., [OII], [OIII], H). However, in this paper, we show that adding NIRCam images through a strategically chosen medium-band filter to common wide-band filters sets adopted by ERS and GTO programs delivers tighter constraints on these galactic properties. To constrain the choice of filter, we perform a systematic investigation of which combinations of wide-band filters from ERS and GTO programs and single medium-band filters offer the tightest constraints on several galaxy properties at redshifts . We employ the JAGUAR extragalactic catalogs to construct statistical samples of physically-motivated mock photometry and conduct SED-fitting procedures to evaluate the accuracy of galaxy property (and photo-) recovery with a simple star-formation history model. We find that adding m medium filters at comparable depth to the broad-band filters can significantly improve photo-s and yield close to order-of-magnitude improvements in the determination of quantities such as stellar ages, metallicities, SF-related quantities and emission line fluxes at . For resolved sources, the proposed approach enables spatially-resolved determination of these quantities that would be prohibitive with slit spectroscopy.
13 pages, 7 figures. Accepted for publication in ApJ
References in corpus (6)
- Dust in the reionization era: ALMA observations of a =8.38 Galaxy
- A Spectroscopic Redshift Measurement for a Luminous Lyman Break Galaxy at z=7.730 using Keck/MOSFIRE
- High-precision Photometric Redshifts from Spitzer/IRAC: Extreme [3.6]-[4.5] Colors Identify Galaxies in the Redshift Range z~6.6-6.9
- The GREATS H+[OIII] Luminosity Function and Galaxy Properties at : Walking the Way of JWST
- Simulating JWST deep extragalactic imaging surveys and physical parameter recovery
- Maximising the power of deep extragalactic imaging surveys with the James Webb Space Telescope
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- The BlueTides Mock Image Catalogue: Simulated observations of high-redshift galaxies and predictions for JWST imaging surveys
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