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Evaluating and Optimizing a Slitless Prism for Nancy Grace Roman Space Telescope SN Cosmology

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arxiv 2206.10632 v1 pith:6MW3UHE4 submitted 2022-06-21 astro-ph.CO astro-ph.IM

classification astro-ph.COastro-ph.IM
keywords romanprismtimeshouldbluecosmologycutoffdata
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This work presents a set of studies addressing the use of the low-dispersion slitless prism on Roman for SN spectroscopy as part of the Roman High Latitude Time Domain Survey (HLTDS). We find SN spectral energy distributions including prism data carry more information than imaging alone at fixed total observing time, improving redshift measurements and sub-typing of SNe. The Roman field of view will typically include ~ 10 SNe Ia at observable redshifts at a range of phases (the multiplexing of host galaxies is much greater as they are always present), building up SN spectral time series without targeted observations. We show that fitting these time series extracts more information than stacking the data over all the phases, resulting in a large improvement in precision for SN Ia subclassification measurements. A prism on Roman thus significantly enhances scientific opportunities for the mission, and is particularly important for the Roman SN cosmology program to provide the systematics-controlled measurement that is a focus of the Roman dark energy mission. Optimizing the prism parameters, we conclude that the blue cutoff should be set as blue as the prism image quality allows (~ 7500A), the red cutoff should be set to ~ 18000A to minimize thermal background, and the two-pixel dispersion should be >~ 70.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. The Hourglass Simulation: A Catalog for the Roman High-Latitude Time-Domain Core Community Survey

    astro-ph.IM 2025-06 conditional novelty 6.0 of 10

    Hourglass simulates the Roman High-Latitude Time-Domain survey catalog, forecasting about 21,700 Type Ia supernovae, 39,000 core-collapse supernovae, and 64,000 total transients with photometry and prism spectra.

  2. Fishing for the Optimal Roman High Latitude Time Domain Survey: Cosmological Constraints for 1,000 Possible Surveys

    astro-ph.CO 2025-06 accept novelty 5.0 of 10

    A Fisher-matrix study of 1,000 Roman HLTDS designs finds that roughly 20% prism, 30-40% wide imaging, and the rest deep imaging is the most promising allocation, and releases covariance matrices.

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