High-Precision Redshifts for Type Ia Supernovae with the Nancy Grace Roman Space Telescope P127 Prism
arXiv:2205.12949 · doi:10.3847/1538-4357/ac9fd5
Abstract
We present results from simulating slitless spectroscopic observations with the Nancy Grace Roman Space Telescope's (Roman) Wide-Field Instrument (WFI) P127 prism spanning 0.75 to 1.8 . We quantify the efficiency of recovered Type Ia supernovae (SNe Ia) redshifts, as a function of P127 prism exposure time, to guide planning for future observing programs with the Roman prism. Generating the two-dimensional dispersed images and extracting one-dimensional spectra is done with the slitless spectroscopy package pyLINEAR along with custom-written software. From the analysis of 1698 simulated SN Ia P127 prism spectra, we show the efficiency of recovering SN redshifts to , highlighting the exceptional sensitivity of the Roman P127 prism. Redshift recovery is assessed by setting a requirement of . We find that 3 hr exposures are sufficient for meeting this requirement, for of the sample of mock SNe Ia at and within days of rest-frame maximum light in the optical. We also show that a 1 hr integration of Roman can achieve the same precision in completeness to a depth of AB mag (or ). Implications for cosmological studies with Roman P127 prism spectra of SNe Ia are also discussed.
ApJ accepted. Updated to match accepted version